Mixing pump combines exhaust water with cleaning agents to prevent road icing hazards and reduce fluid consumption.
Stacked frustoconical pump surfaces reduce shearing forces between rotor and stator, shortening settling times for immiscible liquid separation.
Sequential co-current contactor stages remove acid gases from natural gas, reducing system weight and eliminating costly enrichment processes.
Segmented fins with decreasing pipe cross-sections maintain constant pressure at each port, ensuring uniform gas distribution and flow rates.
Flap and helical mixers enhance evaporation of liquid reductant, reducing residue deposition on catalysts caused by insufficient mixing.
Integrated mixer insert parts with 90-degree twists reduce flow resistance and assembly complexity.
Modified micro-venturi device segments continuous phase fluid to produce monodispersed microbubbles with controlled diameters.
A porous chemical dispenser regulates solute dissolution through permeation to maintain steady concentration levels.
An inverted air inlet at the venturi constriction draws air into the liquid stream, enabling internal aeration without extending spout protrusion.
Pneumatic eductors replace rotating impellers to mix stucco and water, eliminating clogging from premature setting while reducing water demand.
Mechanical agitation in the prill head induces shear thinning of viscous fertilizer mixtures, enabling efficient processing without new equipment.
Radial vapor chimneys in the mixing chamber reduce turbulence and liquid entrainment, cutting mixing zone height by 60% to prevent hot spots.
A beverage carbonation system uses a saturation tank to supersaturate liquid before injection into a pressurized carbonation tank.
A planetary roller mixer uses a closed housing to process suspensions without exposing operators to rotating components.
A logarithmic spiral mixing device generates a vortex to ensure intimate mixing of flocculation agents and sludge.
An adjustable rotor-stator gap in a centrifugal dispersing device controls shear stress to prevent excessive temperature rise while maintaining high yield.
Nested deformation sensors in a segmented spacer detect longitudinal and transversal deformations, resolving friction and wear issues from resin accumulation.
A chemical dilution system combines concentrated chemicals with a diluent to generate active molecules on-site.
Concentric tubes deliver adhesive components to a discharge area for diffusion, preventing clogging in intermittent medical applications.
Angled spray head orifices align urea injection with exhaust gas flow to prevent wall deposition and improve ammonia conversion efficiency.
Slots on baffles convert dead zones into active mixing areas, reducing friction losses and energy consumption in water treatment.
Mixing apparatus circulates slurry through an external homogenization device to reduce particle size during batch production.
An integrated beverage dispensing system automates ingredient portioning and blending through precise pump control.
A dispensing assembly valve actuates via downstream fluid pressure to control flow between open and closed positions.
Bidirectional cleaning member removes slurry deposits from inlet pipe walls to maintain continuous material feeding.
Integrates an LED light bar within a foam generator housing to illuminate dispensing fluid.
Bent flow deflector tubes redirect exhaust gas to create swirl motion, resolving non-uniform reactant mixing in diesel aftertreatment systems.
A mixing chamber uses a funnel element to generate swirling flow, preventing crystalline by-products while reducing installation volume.
A fuel and gas mixing structure segments injection zones to control the mixture ratio before combustion.
Spiral fins generate turbulence to resolve EGR mixing contradictions without increasing device complexity.
A disposable chemical injector isolates corrosive pool chemicals in sealed containers to automate safe dispensing.
Positive displacement pumps circulate pulp fluids to prevent fiber damage while enabling efficient carbonation.
A compact gas mixer uses perimeter holes to fluidly couple a mixing chamber with an inner block for homogeneous gas distribution.
Exterior-mounted agitation nozzles recirculate liquid to prevent settling while a pivoting eductor protects chemical mixing hardware during transport.
Floating amperage control in bipolar electrolytic cells reduces energy consumption while maintaining chlorine generation efficiency.
Segmenting reagents with a permeable barrier fluid controls rapid chemical interactions and prevents uncontrolled mixing in microreactors.
A microfluidic separation device integrates mixing, incubation, and magnetic capture channels to isolate circulating rare cells from blood samples.
A foam generator uses a fluid-permeable particle bed to produce uniform bubbles.
A system stabilizes gas-infused liquid into nanobubbles using a rough flow path and draft nozzle, preventing premature release during discharge.
A mixer body features a continuously concave transition surface between inner and outer walls to facilitate radial thermal expansion.
A concave impinging surface directs reductant flow to enhance atomization quality within the nozzle cavity.
Deformable membrane adjusts flow resistance in a curved channel to maintain constant discharge across varying inlet pressures.
A nanobubble generator uses a porous inner tube to permeate gas into liquid flow, creating entrained nanobubbles without moving parts.
Spinning agitating nozzle creates homogenous foam, reducing chemical waste and maintenance needs.
A chemical reactor mixing system uses baffles and a central aperture to homogenize reactant flow.
A micro-ingredient delivery system uses bulk density measurement to determine dispensing amounts without weigh scales.
A vaporizer casing channel guides convection heat to the liquid supply pipe, eliminating separate heating mechanisms and reducing device complexity.
A flexible wire structure homogenizes exhaust gas flow between the SCR catalyst and the nitrogen oxide sensor.
A universal eductor body connects to interchangeable nozzle assemblies via a swivel joint for precise flow control.