Electronic control replaces mechanical regulators to maintain constant supply pressure during tank discharge, eliminating product loss at low levels.
Segmented handle design replaces welded steel rings to protect cylinder valves while enabling visual inspection and reuse.
A dual-layer insulating barrier uses low-density foam and high-density polymer blocks to manage cryogenic heat transfer in sealed vessels.
Basalt fiber composite layers eliminate expensive carbon fibers and hazardous manufacturing byproducts while maintaining structural integrity.
A combined fill and safety vent plug integrates a valve housing with separate sockets for a fill valve, vent valve, and overflow dip tube.
An integrated valve module combines filling, pressurization, and venting functions within a single unit to manage cryogenic fluid storage operations.
A pressure vessel uses a metallic liner surrounded by carbon and glass fiber layers to reduce weight.
An opening in the prestressed concrete tank wall allows construction access without excavating underground tunnels, reducing time and safety risks.
High conductivity thermal element buried between tank and ground dissipates cold pockets, preventing frost damage while preserving direct burial simplicity.
Angled contact edges on a rotating cap urge a tap lever toward its closed position, resolving the trade-off between lever protection and operational visibility.
Variable fiber winding angles resolve the contradiction between mechanical strength and tank mass while ensuring safe single-piece rupture modes.
A boss structure integrates a metal section with a plastic liner to provide axial strength and rotational stability.
A microcontroller calculates gas consumption using pressure variation and flow rate irregularity factors.
Resin intervening member prevents misalignment between split bodies, reducing material waste and ensuring structural integrity.
A safety cap uses a movable valve to direct gas through anti-recoil apertures or an exit port.
A tubular pressure regulating device uses a nested spring-loaded obturator to maintain precise gas flow control within compact cylindrical bodies.
A tubular housing actuator uses a pivoting lever to enable secure one-hand operation of fluid transfer couplings.
An L-shaped duct insert connects internal cavities to external components within a compact cryogenic pressure vessel.
A vessel mount uses a rotationally free base flange between the liner and fibre layer to secure appendages without structural damage.
Integrating a metallic section within a composite liner creates thermal paths through a ferrule, lowering internal gas temperature during high-pressure filling.
Segmenting the display into an arcuate bar graph and a rectangular area reduces electrical consumption while maintaining readability under protective covers.
Angle correction groove enables rotatable holding block to align tilted end caps for accurate torque transmission during assembly.
An automatic container support mechanism shifts a reservoir below the shut-off valve to intercept falling liquid air and prevent sea surface contamination.
A tubular gas storage structure uses radially distributed pores to accelerate hydrogen diffusion and release rates.
Feedback from temperature and pressure sensors dynamically regulates the pressure-building valve, preventing cavitation without excessive heating.
Internal reinforcement bars counteract pressure-induced tank deformation, enabling thinner walls and eliminating welding risks.
Segmented tubular support elements with slidable outer members accommodate thermal contraction while minimizing heat transfer to liquefied gas.
Molded metal connecting pieces form covalent bonds with a plastic inner container via rotational sintering.
Segmented tank decks and external feed-throughs resolve liquid-induced instability and complex repair requirements in CNG vessels.
A protective cap for propane tanks uses a projecting pin to create a secondary seal within the valve passage.
Cylindrical composite fuel tanks function as structural elements within a cooperating rack superstructure to reduce vehicle tare weight.
Polyamide liner melts during fire events to release internal pressure gradually, preventing explosive failure while maintaining structural integrity.
A storage container tap integrates manual and electric actuation to control an isolation valve within a single bleed-off circuit.
Welding a plastic ring into a cylindrical groove of the metal base eliminates drying time and clamping complexity for hydrogen tank assembly.
A seal member covers the opening recess of a high-pressure gas tank liner to maintain integrity under positional misalignment.