Abstract:
The technical result of the proposed invention is the absorption of the impact energy. The technical result is achieved by using metal composite pressure cylinder that contains a closed thin metal sealing liner, a pressure overwrap made of composite material formed by a combination of groups of layers of reinforcing material made of high-modulus filaments orientated in spiral and circumferential directions, and a protective overwrap fabricated from a composite material made of a group of layers of reinforcing material made of low-modulus filaments. Herewith, an energy damping shock absorber is installed on the part of the surface of at least one of the bottoms, between the group of high-modulus reinforcing material of pressure overwrap and a group of the layers of low-modulus reinforcing material of protective overwrap; the above shock absorber comprises a rigid profiled frame on the side of protective overwrap and a damping device on the side of the pressure overwrap which are interconnected.
Abstract:
A portable liquid oxygen medical delivery system including a portable liquid oxygen delivery apparatus and a portable liquid oxygen recharger. The portable liquid oxygen delivery apparatus contains an initial quantity of liquid oxygen. The liquid oxygen delivery apparatus is sufficiently lightweight for portability by an ambulatory patient and has a fill port for receiving liquid oxygen. The liquid oxygen recharger stores a supplemental quantity of liquid oxygen and is also sufficiently lightweight for portability by an ambulatory individual. The liquid oxygen recharger has an interface for interfacing the liquid oxygen recharger with the portable liquid oxygen delivery apparatus for delivering the supplemental quantity of liquid oxygen to the portable liquid oxygen delivery apparatus.
Abstract:
A vessel and method for forming the vessel is disclosed, the vessel having an injection blow molded hollow liner, wherein the hollow liner includes reinforced interfacial features formed substantially around a portion of at least one vessel penetration element.
Abstract:
A support frame attachable to a pressurized gas cylinder pallet is disclosed. The support frame includes an adjustable first support member having a first brace and a second brace and a second support member having a third brace that extends from the first support member. The first support member is adjustable to move the first and second brace into engagement with the pallet and the third brace is slidable along the second support member to also move the third brace into engagement with the pallet. The three points of contact stabilize the support frame on the pallet such that a manifold can be connected to the support frame for connection to the cylinders on the pallet. Also disclosed is a kit including the support frame and the manifold.
Abstract:
A method and system for installing and maintaining submerged pumps is disclosed. The submerged pump may be positioned within a product storage vessel. Alternatively the submerged pump may be positioned within a product storage vessel with a sump that is integral with and not removable from the vessel. The pump may used for the movement of products, such as cryogenic liquids, including but not limited to, nitrogen, argon, ethylene, natural gas, nitrous-oxide, carbon-monoxide, hydrogen, helium, and carbon-dioxide. Superior results are obtained with respect to access, maintenance and handling of the pump within a product storing vessel.
Abstract:
A fuel vessel assembly for a fuel cell-powered vehicle and a method of increasing the structural rigidity of a fuel cell-powered vehicle. A vessel for storage of hydrogen or related fuel cell-compatible fuel is rigidly attachable to a vehicular frame or related load-bearing structure through one or more shells that extend from the vessel. Loads imparted to one or more of the shell, vessel frame are transmitted between them through the connection between the assembly and the frame such that a load-bearing capability inherent in the frame is enhanced by the assembly.
Abstract:
[Object] A safe hydrogen storage tank in a highly reliable form where it is difficult for fatigue failure to occur is provided as a hydrogen storage tank where a cartridge is filled with a hydrogen occluding substance and contained within an integrally molded liner made of a metal.[Means for Achieving Object] A cartridge 10 is formed of a cartridge main body portion 11, a fixed side axial portion 13 and a free side axial portion 12, and an integrally molded liner 20 which is seamless is formed of a liner torso portion 21, a fixed side end portion 25 where a fixed side opening 25a is created via a portion in dome form 24 and a free side end portion 23 where a free side opening 23a for supporting a support plug 30 is created via a portion in dome form 22 in order to support a free side axial portion 12a, in such a manner that the fixed side opening 25a fixes and supports the fixed side axial portion 13 and is sealed by a sealing plug 40 while the free side opening 23a is sealed by the support plug 30, and the free side axial portion 12 is inserted into and supported by the recess 31 created in the support plug 30 so as to be moveable forward and backward in the direction of the axial line.
Abstract:
Methods, apparatuses and systems directed to clathrate hydrate modular storage, applications and utilization processes. In one implementation, the present invention provides a method of creating scalable, easily deployable storage of natural gas and thermal energy by assembling an array of interconnecting, modular gas clathrate hydrate storage units.
Abstract:
The objective is to enable the formation of an outer circumferential layer by a filament winding process to be performed appropriately, and to achieve the weight reduction of a gas tank by reducing the weight of a mouthpiece. The gas tank comprises a mouthpiece attached to an end of a tank main body in its axis direction, and an outer circumferential layer formed over an outer circumferential surface of the tank main body and an outer circumferential surface of the mouthpiece by a filament winding process. On the end of the tank main body in the axis direction, a recess section, in which an outside end surface of the mouthpiece is embedded in the inner side from an outside end surface of the outer circumferential layer, is formed.
Abstract:
A pressure container includes a metal socket and a CFRP layer that contacts the metal socket. A metal oxide layer is formed on a first contact area where the socket contacts the CFRP layer. The socket may be made of aluminum or aluminum alloy, and the oxide layer may be formed by anodizing the socket.