See how close-wound heating wire segments with 0–2 mm intervals concentrate heat locally, raisi
A rinsing chamber and stationary nozzle wash a multilayer tooth-cleaning tablet from all sides to improve dissolution and prevent residue blockage.
Liquid plasma generated in a nozzle enables precise edge etching on substrates while limiting unintended thin-film removal near metal interconnections.
Liquid CO2 mixed with a cold-resistant liquid embrittles adhesive below -40°C, enabling residue removal with less force and thermal risk.
A spring-biased nozzle control lever uses continuous pneumatic signaling to prevent accidental abrasive blasting and reduce injury risk.
A gas-driven abrasive particle stream cuts battery electrode foils at high speed without burrs, tool wear, or heat-affected zones.
A capped hole inlet and movable obstruction body guide an external cavitation jet to treat inner surfaces while protecting non-processing regions.
A cam assembly drives hose reciprocation so one mounted head can treat elevated or complex surfaces with less manual repositioning.
A grooved, elliptic cavitation nozzle boosts compressive stress and surface grinding while limiting nozzle wear under high-pressure liquid flow.
An elliptical ejection hole and discharge groove shape the cavitating jet to raise compressive stress and improve surface grinding on workpieces.
Spaced sensors track abrasive column movement in a conduit to calculate real-time flow rate and cut waste from manual sampling.
Optical sensors track abrasive column movement in a feed chamber to calculate flow rate in real time and stabilize waterjet cutting quality.
A tubular diamond body with a protective casing resists abrasive wear, extending fluid jet nozzle life and reducing downtime.
Groove holes in the abrasive article promote controlled particle detachment, improving back-grinding rate while preserving wheel durability.
A superhard outlet ring and reinforcing body protect CVD diamond focus tubes from reflected abrasive erosion, stress waves, and failure.
A capped hole inlet guides an external liquid jet to peen or clean inner surfaces while shielding non-processing regions from cavitation damage.
A sealed micro-blaster with magnetic jig fixing removes welding spatter efficiently, improving weld quality while preventing secondary pollution.
Concentric nozzle lighting removes workpiece shadows while remote metering improves abrasive flow control, reducing interruptions and media waste.
An offset helical hose insert reshapes dry blasting flow to cut turbulence and friction, raising blast kinetic energy and cleaning efficiency.
A sealed micro-blasting jig cleaner uses magnetic fixing and controlled air-sand flow to remove welding spatter and prevent secondary pollution.
A co-flow nozzle and movable water source generate cavitation bubbles for on-site peening, cutting repair time, shot use, and safety risks.
A co-flow nozzle uses two water streams at different pressures to create cavitation bubbles for safe, tank-free peening on fixed workpieces.
Nozzle wall holes and segmented wet blast streams stabilize small wires, cut guide wear, and improve cleaning efficiency.
A spiral flow guide creates a vortex jet that boosts coolant penetration and atomization for grinding cooling at lower pump power.
Concentric high- and low-pressure water jets create cavitation bubbles for portable on-site peening without tank submersion, reducing repair cost and risk.
Centered dual-nozzle shot peening increases measuring tape blade cupping to extend standout while preserving reel winding and preventing twist.
Independent pressure and shot-flow control on both airfoil sides improves peen coverage while limiting deflection and preserving blisk geometry.
A movable segmented ring sensor keeps nozzle distance accurate during tilted water-jet cutting and stops motion before head collisions.
Correlated pressure, temperature, and vibration sensing predicts failure modes in pressurized fluid cutting systems to cut downtime and avoid unnecessary replacements.
A conical bore with spiral channels and spaced air inlets concentrates sand flow, reducing dispersion while improving impact and surface uniformity.
Automated soft-actuated joints reposition the abrasive jet nozzle in small cavities to improve polishing precision, efficiency, and consistency.
A carrier assembly with a deadman and pad mount redirects blast hose thrust to the torso, reducing hand and arm strain during abrasive blasting.
A traveling carrier and movable blaster head automate aircraft paint removal, cutting worker burden while maintaining precise blasting position and angle.
A coaxial liquid jet and surrounding gas flow remove edge coatings in one pass, limiting debris redeposition and substrate damage.
Angled liquid etchant with a gas shroud removes edge coatings from both substrate sides in one pass, reducing debris and breakage risk.
Secondary flow blades accelerate abrasive only at the nozzle outlet, cutting internal wear while preserving concentrated cleaning efficiency.
Ultra-high pressure waterjets replace noisy grinding trains to repair rails accurately around curves and junctions with low heat and lower cost.
A liquid guide body and side channels pull more suspended abrasives into the cavitation jet, improving CASF surface smoothing and peening.
Staged expansion channel sections create pressure jumps and turbulence that boost CO2 snow particle momentum, cleaning effect, and economy.
Atmospheric plasma oxidation loosens thick tin deposits so CO2 snow can remove them faster without damaging EUV collector surfaces.
A slight 0.05°-1° duct taper cuts abrasive wall impact, extending focusing tube life and reducing noise in high-pressure jet cutting.
An eccentric water stopper block and focusing tube improve abrasive-water mixing and create a wide fan-shaped jet for more uniform strengthening.
An acoustic shroud with layered dampening panels and an air curtain cuts abrasive blasting noise while reducing operator fatigue and exposure.
A grooved nozzle plate, removable cap, and wear-resistant features help cavitating jets resist abrasive particle damage and extend nozzle life.
CO2 snow blasting can release CO2 and waste accelerating gas; this case recovers both from exhaust for lower-emission cleaning.
Dust and tolerance stack-up threaten focusing-orifice alignment; an integrated collet supports consistent abrasive waterjet cutting.
A rectangular nozzle and controlled blast flow clean delicate structures without grinding the restored surface, while leaving fine roughness for coating adhesion.
A mobile high-pressure waterjet uses abrasive jets to reprofile damaged rails with less noise, sparks, heat input, and rework than grinding.