Segmented removal lines eliminate complex three-way valves, reducing device complexity while maintaining precise pressure control capability.
A ventilation valve uses two closure bodies of different densities to seal against overflow and roll-over events independently.
A cryogenic tank uses a heat-bonded thermoplastic resin layer on a fiber-reinforced composite inner shell to create an airtight barrier.
A fuel cartridge employs a spring-biased slidable ejection nozzle and seal holder to prevent dust contamination while ensuring secure attachment.
A composite tank uses a smooth innermost helical layer to prevent structural bends in adjacent hoop fibers.
Controller divides storage sections into monitoring areas to adjust inactive gas supply amounts across segmented zones.
Modular formwork guides sprayed insulating foam into compartments while junction elements expand to fill gaps during cooling cycles.
Flow shields redirect escaping pressurized fluid away from the operator, resolving hazards caused by seal leaks or residual pressure in swing bolt closures.
A segmented coupling part screws onto the cylinder valve while a plug-and-socket mechanism connects to the pressure reducer for rapid attachment.
Submerged heat exchangers stabilize pressure and flow rate for multiple machining stations by regulating subcooled liquid supply.
Bellow connections compensate for thermal expansion in single-shell LNG tanks, preventing leakage and cold damage while optimizing shipboard space.
Wedge-shaped arcuate segments and adjustable hinges position the closure door and align planarity, resolving complexity in pressure vessel access.