A conditioning device uses a movable blocking member with an upstream tightness seal to engage pressurized fluid connectors.
A perforable cartridge safety device uses a helical spring and radial arms to secure the obturator against gas leakage.
A vaporizer and heat exchanger cool compressed gas for tank filling.
A high-pressure cylinder nozzle uses a double conical interface to join metal and plastic components.
A gas filling device rain gutter intercepts splashed water above the display panel to protect internal components.
Nested flexible bladders in a protective enclosure store large liquid volumes on the seafloor, reducing platform space and weight constraints.
Disc springs propel a penetrator through a membrane while dual moisture sensors prevent accidental inflation from splashes.
Liquid phase natural gas-solvent mixture achieves high-density storage without cryogenic energy demands.
A boss assembly integrates a fiber-reinforced dome reinforcement part with the boss component to streamline mounting operations.
A pressure relief system uses a normally closed first valve and a normally open second valve to discharge propellant from a fuel container.
A pressure vessel foot with a narrow neck and wider head enables comprehensive longitudinal winding coverage.
Computes transition parameters via mass and energy balances to manage pressure variations in sealed liquefied gas tanks.
Segmented thermal distance piece assemblies with internal inner flanges and vapor barriers prevent ice formation on cryogenic storage tank connections.
Inspecting high pressure tanks before attaching gas flow paths eliminates drying delays and reduces inspection time.
An embedded inlet-outlet system reduces the overall size of composite pressure receptacles.
A high-pressure tank manifold uses a communicating path to discharge leaking gas from the abutting surface.
Segmented sleeve sectors oscillate during dragging events, preventing permanent deformation of the coupling.
Injection molded plastic rings with elastic latching arms prevent base ring damage and rust while simplifying manufacturing complexity.
Polymeric handle shroud with deflectable fingers absorbs impact energy through elastic deformation.
A check valve uses a casing flow path to reduce pressure loss.
A cryogenic pressurization system compresses gaseous hydrogen through controlled thermal expansion in a secondary tank.
Segmented casing widens the center while narrowing ends to boost storage capacity without compromising sealing integrity at 5,000 psi.
Fastening straps with sawtooth profiles prevent unscrewing the cap without destruction, resolving stiff thread issues that compromise seal integrity.
Split ring support body secures composite jackets against delamination via screw force.
Segmented cylindrical vessel regions and couplers densely pack to fill irregular volumes, maximizing storage density in constrained vehicle environments.
A pressurized fluid valve uses a nested locking member with a movable gripping end housed within the head.
Fuel tank uses spaced energy absorbing layer to prevent heat bridges while absorbing crash energy.
A pressure vessel valve integrates outflow openings into the end piece wall to enable lateral media exit.
A gas filling control device selects pressurized sources based on demand signals.
Segmented axial pistons resolve space-safety contradictions by enabling internal regulators in standard cylinders without external high-pressure lines.
A pressurization device accelerates liquefied gas transfer by merging fluidic connection and pressure increase into a single concurrent operation.
Replacing ball valves with disposable membranes eliminates corrosion risks while ensuring complete gas discharge into beverages.
An injection valve controls cryogenic fluid flow to a heat exchanger, reducing customer wait time and electricity consumption during idle periods.
A variable thickness partition wall reduces heat entry while preserving joint strength against thermal contraction stresses in double-shell tanks.
A braided heat conductor inside the vessel transfers heat to the fusible plug valve while absorbing thermal expansion to prevent breakage.
Rotatable vent mechanism maintains upward hydrogen discharge orientation relative to the ground.
A high-pressure tank liner uses a trap groove to capture base resin before it enters the discharge hole.
Carbon fiber wraps on a metal liner improve impact resistance while reducing weight, avoiding aluminum fragmentation in oxygen service.
Segmented formers and sliding pivots secure liquid hydrogen tanks, resolving the trade-off between operator access volume and structural constraints.
Remote controllers adjust return valves to lower tank pressure, enabling safe liquefied natural gas transfer without operator intervention.
Shoulder and valley features increase strength and volume-to-air ratio without additional packaging.
Applies pressure and temperature corrections to upstream flow meter readings, eliminating overcharging errors caused by pipe volume variations.
Elevating the internal liner pressure during thermosetting resin curing suppresses hole structure formation and prevents gas permeation paths.
Segmented illumination and detection units provide precise cylinder positioning data, enabling accurate robotic picking in mixed pallet arrays.
A pressure regulator valve and compressor system manages compressed gas dispensing across supply and storage vessels.
A mechanical check valve uses a piston and flow guide to terminate gas refueling at set pressure without electrical components.
Segmenting the hand-wheel from the indicator eliminates friction interference during flow adjustment while maintaining reliable pressure monitoring.
A bottom pressure regulator controls gas pressure via an evaporator and valve to maintain precise liquid levels in cryogenic tanks.