Segmented sub-channels with angled deflectors create turbulence to mix reactants, preventing solid deposits and reducing ammonia slip in SCR systems.
Radially oriented deflectors create turbulence in the exhaust stream, preventing reductant impingement and deposit accumulation on mixer surfaces.
A dynamic mixer uses movable vanes to adapt geometry relative to a stationary part, maintaining mixing efficiency across varying exhaust gas conditions.
A mixing device flow guide splits exhaust gas streams to accelerate clean flow over the dosing unit area.
Rotational fluidic transfer assembly injects pressurized treatment fluid through a helical mixing element.
A Venturi nozzle disperses solutes into small drops within a medical bag, preventing clumping and reducing dissolution time.
A gas gathering chamber encloses a mixing pipe entry end to retain heat for urea water decomposition without external insulation.
A beverage mixing block creates turbulence via side impingement, ensuring consistent composition and preventing component settling before the tap.
A compact diffusion device uses a helicoidally rotating knob to securely seal peripherally flanged capsules.
A foam generator uses a packed spherical particle plug and resilient sleeve to produce monodisperse bubbles.
A mix box design maintains a flow zone free of guiding elements to direct exhaust gas directly toward the injection nozzle.
A fuel vapor recovery inlet assembly uses a restrictor plate to direct vapors into liquid flow.
A squeeze container with a hinged lid and nozzle member delivers liquid concentrate doses while preventing uncontrolled dripping and staining.
Curved concave blades create vortex flow to mix exhaust gases while minimizing pressure loss and condensate accumulation.
Counter-rotating rollers stretch fluid filaments until they break, overcoming extensional thickening viscous drag in non-Newtonian fluids.
A hollow fiber membrane carbonator integrates directly into a chilling reservoir to carbonate water continuously as it flows through the system.
A plunging jet module mixes carbon dioxide with water to generate high-pressure carbonated water.
Fragrance dispensing unit integrates with environmental control system to deliver customized scents across cabin zones without increasing device complexity.
An emulsion stabilizes supercritical carbon dioxide to block high-permeability channels, preventing gas bypass and improving oil recovery efficiency.
Insulating ceramic outer cylinders and fins reduce thermal mass to lower power consumption while preventing rusting of embedded heating wires.
Replacing radial seals with axial sealing surfaces resolves the contradiction between sealing reliability and handling ease for plastic admixture components.
Automated mixing vessel dissolves powders in solvents via recirculation, eliminating heavy liquid transport costs and powder deterioration.
Double swirls from a hollow flange create turbulence that accelerates atomization of the reduction agent.
Plasma in cavitation bubbles creates hydroxyl groups on carbon nanotubes, enabling uniform dispersion in water without dispersants.
Multiple discharge apertures disperse ammonia gas into exhaust streams, resolving the trade-off between NOx reduction effectiveness and system length.
Sealed helical conveyors introduce dry additives into fluid streams without dust generation or moisture contamination.
A nozzle buffer space with a collision member reduces treatment liquid flow velocity to separate bubbles before discharge.
Spiral cups in exhaust injection sections extend gas jet paths to resolve ammonia dispersion bottlenecks and reduce production costs.
Segmented gas-liquid mixing with an uneven-shaped straightener reduces turbulent flow noise below 70 dB for indoor humidification.
A static mixer assembly uses three pairs of inwardly extending fins to direct fluid flow outward along the periphery while maintaining an unobstructed central region.
Surface temperature control above the amine dew point eliminates solid deposits and blockages in isocyanate production reactors.
Helical spray channels swirl reductant solution to break it into fine particles, resolving atomization difficulties in compact exhaust nozzles.
Baffles in the mixing chamber induce turbulence to improve polydispersity, enabling scalable industrial production of liposomal adjuvants.
Segmenting the exhaust stream prevents urea precipitation on walls, maintaining catalytic efficiency without adding mechanical complexity.
Angled liquid influxes enhance kinetic energy to improve product homogeneity, reducing waste from production line cleaning.
Parallel inlet and outlet ducts induce swirling flow for high homogenization efficiency while managing pressure loss.
A pipe assembly with parallel flow paths and a control valve generates negative pressure to draw ozone into water for in-line mixing.
A metering pipe generates high-energy swirl flow to transport liquid precursor droplets along the casing wall.
Assembled capillary tubes prevent fine solid component accumulation and droplet coalescence in polar organic solvents.
Segmented meshes and a pulverizing member progressively reduce granule size to prevent discharge pathway blockages in airless cosmetic containers.
Coaxial multitube holder distributes multiple liquids evenly to microchannels, eliminating complex micropore processing and reducing manufacturing costs.
Dual fine bubble generator uses opposing swirling vanes to enhance turbulent flow and refine gas-dissolved water bubbles.
Curved flow inlets reduce resistance to boost exit rates and lower energy consumption.
Segmented static mixer inserts with concave and convex surfaces induce turbulent flow to improve mixing efficiency while minimizing pressure drop.
A side stream system mixes antimicrobial agents and alkaline solutions before introducing them into processing tanks.
A medical elongated body integrates liquid and gas channels with a foaming member to discharge foamed material directly.
Inline carbonation chamber uses a gas adjustment member to regulate CO2 injection, eliminating high pressure pumps and complex plumbing.
Manifold assemblies integrate catalyst and carrier gas inlets to reduce fouling, preventing shutdowns.
A float-controlled dosing device circulates fluid through a spray nozzle to dissolve solid treatment agents in a storage container.