Opposing bands generate static friction to suppress tank rotation and rattling without requiring high urging forces or increasing apparatus size.
Vertical connecting ducts link adjacent tank sections to enable complete emptying and pressure relief without adding complex outlets.
A semi-submersible unit connects flexible tubing to LNG carriers using lifting devices.
A rotating conical piercing member pierces gas cartridge seals using threaded motion.
A hydrogen cartridge uses thermal insulation and conduction members to manage heat transfer between the self-closing valve and fusible plug.
A hydrogen buffer system decouples high-pressure storage from fuel cell delivery, simplifying the mechanism while maintaining volumetric energy density.
Parallel reservoir feed system moves liquefied gas using pumps and regulating valves to counteract pressure lowering during refueling.
Segmented textile sheets resolve manufacturing complexity while maintaining high strength in composite pressure tanks.
Segmented dome ribs minimize dead volume and thermal conduction paths in cryogenic tanks.
Conversion pump uses liquefied fuel phase transitions to drive compression, eliminating parasitic losses from external compressors.
Segmented reinforcements with differing elongation at break prevent uncontrolled bursting by signaling overload before catastrophic structural failure.
A hydrogen storage tank insert part with a grippable handle guides the tank into a fuel cell inflow port for direct coupling.
A threaded metal sleeve anchors an LPG tank to the vehicle floor, eliminating tie rods and ensuring a perfect vapor seal against leakage.
First and second check valves on the suction pipe maintain pressure during charging while allowing fuel inflow during restarts.
A floating structure ampoule maintains constant headspace volume through buoyancy-driven float movement.
A cryogenic fluid loading system uses a cooling unit to lower transfer temperatures before the receiving vessel.
Check valves in a gas distribution system select the tank with highest pressure, preventing lamination and noise from mixing gases at different pressures.
Curved corner panel integrates stress diverging parts to distribute mechanical loads across the LNG cargo containment structure.
A three-bottoms pressure tank design featuring nested shells and variable wall thickness zones in connector pipes.
A spherical pressure vessel assembly stores compressed air at high pressures up to 15,000 psi.
An electronic valve replaces manual labeling by calculating medical gas expiry dates from pressure sensor data, preventing use of expired cylinders.
Segmented conformable tanks dissipate compression heat through increased surface area, enabling faster filling without pre-cooling infrastructure.
A safety valve uses a protrusion fulcrum to support the valve element and protect the meltable body from pressure damage.
Nested rotating units expand the indicated opening angle range, resolving narrow control limits in gas supply management.
Segmented borosilicate glass capillaries replace heavy metal tanks to lower system weight while maintaining high-pressure containment.
A refillable propane tank system transfers fluid via a specialized valve assembly to enable multiple uses of one-pound containers.
A pressure regulator identification device with a separable label transfers pre-printed data to forms, eliminating manual duplication errors.
A high pressure tank liner mouthpiece interface uses radial projections and recesses to mechanically engage the components.
A storage tank safety system monitors pressure changes in the insulation cavity to detect structural damage.
A composite neck resists gasket deformation in pressurized fluid tanks, maintaining sealing reliability without increasing weight or manufacturing cost.
A gas container display shows selectable flow values alongside corresponding autonomy times using a pressure sensor and signal processing means.
A hydrogen gas filling method estimates pressure loss using pre-supply and post-supply upstream pressures to control supply timing.
Anti-convective filling elements placed in corrugations create pressure drops that limit natural convection currents and prevent thermosiphon formation.
A floating cryogenic storage structure uses a stepped spherical tank configuration to reduce hull width and steel weight.
A dual-vessel cryogenic storage system uses a secondary vessel to absorb thermal energy and maintain low temperatures.
Segmented sealing elements and a mediator pad maintain gastightness at low pressure, reducing container weight and complexity.
An annular casing secures an RFID antenna around a container valve using a removable attachment surface.
Horizontal high-pressure tank injects gas from both ends toward the upper inner wall to create collision-based stirring.
A hydrogen valve assembly uses an intermediary fourth flow path to route gas discharge through a controlled outlet.
A vehicle fluid storage device couples a metal connector to a plastic container using a welded holder for structural integrity.
A refillable hydrogen fuel canister uses a metal hydride storage vessel to supply clean energy for combustion power tools.
Dual columns distribute weight evenly, resolving stability issues caused by unbalanced loads on single-column medical trolleys.
Cascade dispensing transfers compressed gas between storage vessels using pressure differences to supply receiving tanks without on-site compressors.
A modular pressure vessel system uses connection pieces with sealing and securing faces to integrate multiple fuel storage units.
Fingers engage recessed housings with wall restrictions to maintain stable positions, eliminating unexpected unfolding risks.
A fuel tank valve ejects gas at a predetermined angle to enable precise temperature measurement during filling operations.
Antistatic polycarbonate housings allow real-time monitoring of temperature and pressure, resolving safety risks from static electricity accumulation.
A cylinder content indicator device affixed to gas valves monitors internal pressure using a gauge and electronics assembly.