Abstract:
An articulated firefighter breathing pack includes multiple polymeric pressure vessels connected together and to a flexible manifold with sections of flexible conduit. The pressure vessels and sections of flexible conduit are encased in high strength fiber material. The pressure vessels are wrapped in high strength ballistic ribbon material. The manifold provides connections for a high pressure regulator and an air fill source. A low pressure hose is connected to the high pressure regulator, a low pressure regulator is connected to the low pressure hose and a mouthpiece connected to the low pressure regulator. A pressure vessel container attaches the pressure vessels, the flexible conduit and the manifold to a harness having a waist portion and two vertical straps extending upwardly over the shoulders and back down to the waist portion. A utility belt provides mounting for equipment for the breathing pack including hoses, a power supply, electronic sensors and controls.
Abstract:
A flexible pressure vessel is constructed from at least one pair of upper and mating lower dome shaped cell portions. Upper and lower passageway portions extend outwardly from each cell portion to surrounding sheet material. The portions are joined to form a passageway for connection to a valve or another cell. Upper and lower reinforcing rings surround the cell portions. Blankets of fiber reinforced material are attached over the cell portions and stitched in place through the surrounding resilient material. Cell shaped sponges impregnated with absorbent materials are encased in impermeable plastic tubing and inserted into the cells. High-strength filaments are wound around the tubing to provide additional pressure handling capability. Heat-reflecting plastic film or metal foil is inserted between blankets and the cell portions. Reinforcing rings are attached over and fastened through the blankets around the cells. An apparatus and method are described for constructing the flexible pressure vessel.
Abstract:
A fitting with a dual locking swaging mechanism includes a projection to be inserted into the open end of an elastomeric tube. A ferrule is connected at one end thereof to a body portion of the fitting and is swaged over the tube to hold the tube onto the projection inserted into the tube. The tube is thereby held to the fitting by both frictional engagement of the tube with the projection and the ferrule and by the connection of the ferrule with the main body of the fitting.
Abstract:
In a swim fin unit for use on the foot of a swimmer, the combination, comprises a body defining a foot receptacle, that opens endwise forwardly; first fin structure integral with and extending generally rearwardly of the body to be flexed upwardly and downwardly rearwardly of the body, by water pressure; and second fin structure integral with and extending generally vertically rearwardly relative to the body; said first fin structure defining a first plane and the second fin structure defining a second plane; the first and second planes intersecting in generally perpendicular relation.
Abstract:
A flexible pressure vessel is constructed from at least one pair of upper and mating lower dome shaped cell portions. The dome portions are molded from sheets of resilient material and joined together by radio frequency welding or high-strength adhesives. Upper and lower passageway portions extend outwardly from each cell portion to the surrounding sheet material. When the cell portions are joined the passageway portions are joined to form a passageway for connection to a valve or another cell. Upper and lower rings surround the upper and lower cell portions to provide reinforcement for the cells. First and second blankets of heavy-duty fiber reinforced material are attached over the upper and lower cell portions and stitched in place with heavy-duty stitching extending through the resilient material surrounding the cell portions. Cell shaped sponges impregnated with absorbent materials are encased in liquid and gas impermeable plastic tubing and inserted into the cells prior to joining of the cell portions. Heat-reflecting plastic film or metal foil is inserted between blankets and the cell portions. The heavy duty stitching is high-pressure loop and lock braiding. The passageway has a cross-section of between 0.050 and 0.100 inches. An apparatus and method are described for constructing the flexible pressure vessel.
Abstract:
An apparatus for forming a polymeric pressure vessel includes two, coaxial plastic extruders separated by a hole-forming laser and connected to a variable die, a vacuum/blow molding apparatus, a fusing device, a braiding mechanism, and an overcoat applicator. The first extruder forms a tubular core, and the laser forms axially-spaced apertures in the core. The second extruder forms an outer tube coaxially over the tubular core and the variable die is alternately opened and closed to form parisons of increased material at axially-spaced locations along the outer tube. The parisons are moved into the molding apparatus and are expanded in a vacuum/blow molding process into hollow chambers of preferably ellipsoidal shape. The fusing device fuses the outer tube to the tubular core at locations between the spaced-apart hollow chambers, the braiding mechanism then applies a layer of interwoven reinforcing filament fiber, and the overcoat applicator applies a protective polymeric coating over the fiber layer. The entire device is computer-controlled for maximum automated efficiency. The first extruder and the hole-forming laser may be omitted if the inner tubular core is to be omitted from the pressure vessel.
Abstract:
An emergency breathing apparatus includes a hood, a gas storage pack, and a supply conduit connecting the hood and the gas storage pack. The gas storage pack includes a pressure vessel formed from a plurality of hollow chambers, which have either an ellipsoidal or spherical shape, interconnected by a plurality of relatively narrow conduit sections disposed between consecutive ones of the chambers. The pressure vessel includes a reinforcing filament wrapped around the interconnected chambers and interconnecting conduit sections to limit radial expansion of the chambers and conduit sections when filled with a fluid under pressure. The gas storage pack further includes a fluid transfer control system attached to the pressure vessel for controlling fluid flow into and out of the pressure vessel and a housing for containing the pressure vessel. During use, the hood is worn over the head of a person and a breathable gas, supplied by the supply conduit from the pressure vessel to the hood, creates a positive pressure within the hood relative to ambient pressure, thereby permitting the person wearing the hood to breath and protecting the person from noxious gases outside the hood.
Abstract:
A cellular reservoir flexible pressure vessel is formed as a series of closely packed tubes fitted into a pair of opposing end caps. The end caps have individual receptacles sized and shaped to receive the tube ends that are secured with adhesive or radio frequency welding. At least one end cap has a passageway for connection of the vessel. The vessel may be formed in a variety of useful shapes and the tubes may have various internal and external cross-sections. The end caps may be filled with sintactic foam with canals leading to the passageway. Microtubes through the syntactic foam may connect the tubes to the passageway. The vessel is further strengthened by overwrapping with high-strength braiding material, hoop winding or by overlayment with high-strength fabric. The vessel is further strengthened by coating with plastic resin. Apparatus and methods for forming the cellular reservoir flexible vessels are described.
Abstract:
A litter for carrying a patient in a supine position, such as a stretcher or trauma board, includes a support panel and a pressure pack for providing a portable supply of medicinal gas, such as oxygen, that can be administered to a patient on the liter. The pressure pack includes a gas storage vessel formed from a plurality of polymeric hollow chamber having either en ellipsoidal or spherical shape and interconnected by a plurality of relatively narrow conduit sections disposed between consecutive ones of the chambers. The storage vessel includes a reinforcing filament wrapped around the interconnected chambers and interconnecting conduit sections to limit radial expansion of the chambers and conduit sections when filled with a fluid under pressure. The storage vessel further includes a fluid transfer control system attached to the storage vessel for controlling fluid flow into and out of the pressure vessel and a gas delivery mechanism for delivering gas from the storage vessel to a user in a breathable manner.
Abstract:
A vehicle includes a storage pack for storing gas under pressure for providing an onboard supply of the pressurized gas. The pressurized gas may be used as a medicinal gas, e.g. oxygen, on emergency medical vehicles, or the gas may be used as a fuel source for a motorized vehicle having a motor that runs on combustible gas. The gas storage pack includes a pressure vessel formed from a plurality of hollow chambers, which have either an ellipsoidal or spherical shape, interconnected by a plurality of relatively narrow conduit sections disposed between consecutive ones of the chambers. The pressure vessel includes a reinforcing filament wrapped around the interconnected chambers and interconnecting conduit sections to limit radial expansion of the chambers and conduit sections when filled with a fluid under pressure. The gas storage pack further includes a gas transfer control system attached to the pressure vessel for controlling gas flow into and out of the pressure vessel.