Abstract:
Embodiments provide a swimming assist garment capable of adjusting buoyancy positions. In the embodiments, the swimming assist garment includes a swimsuit, a buoyancy mechanism, and a gas regulating mechanism. The inflatable end of the gas regulating mechanism is connected to first airbags of a first buoyancy assembly and a second airbag of a second buoyancy assembly. The first bidirectional air pumps are connected to each first airbag and each third airbag of the first buoyancy assembly; and a second bidirectional air pump is connected to the second airbag and the fourth airbag of the second buoyancy assembly, to change the buoyancy positions of the swimsuit to adapt to swimming postures or to support the head on the water.
Abstract:
An aspirator system for inflating an inflatable device includes an aspirator body and a plurality of nozzles. The aspirator body has an inner surface and an outer surface that each extend between a first end and a second end along a central longitudinal axis. The aspirator body defines a distribution channel that is disposed between the inner surface and the outer surface. The plurality of nozzles are fluidly connected to the distribution channel and extend inwardly from the inner surface towards but are spaced apart from the central longitudinal axis.
Abstract:
A method of operating an inflation system is provided. The method includes recognizing that the inflation system is activated or actuated by a user, supplying current to an electromagnet of a solenoid valve of the inflation system such that an armature-valve element of the solenoid valve is moved to an open position, wherein movement of the armature valve element to the open position actuates an actuator housing that in turn causes a normally-closed valve element of a valve housing of the inflation system to open, and ceasing current supply to the electromagnet once the actuator housing is actuated.
Abstract:
A recovery device can include a bladder, a canister, an opening mechanism, and a tether. The bladder can be disposable in an inflated configuration and an un-inflated configuration. The canister can contain a compressed fluid and be coupled with the bladder. The opening mechanism can be configured to selectively open the canister and direct the compressed fluid into the bladder. The tether can extend between a first end coupled to the bladder and a second end engageable with a vehicle. The bladder in the inflated configuration can define a volume of less than one-tenth of a cubic meter.
Abstract:
Embodiments provide systems and methods for an actuating system for inflating an inflatable structure in which a pressurized fluid piston is coupled directly to the valve an inflatable structure. The coupling of actuator to valve is such that the pairing will remain rigid and secure until the deliberate act of operating the actuator. When the actuator is operated, the actuator displaces a translating chock. This activation simultaneously (a) decouples the valve from actuator, allowing the inflatable to deploy without impedance and (b) activates the inflation of the structure via the valve.
Abstract:
Disclosed are an air inflating and deflating float for marine cultivation and a manufacturing method thereof. The air inflating and deflating float for marine cultivation includes a soft float body provided with a valve fixing part with an insertion hole, formed at the center thereof and connected to the inside of the float body, formed at one side of the float body; a valve inserted into the insertion hole of the valve fixing part, and provided with a through hole, through which air comes in and out, formed therein; and a protection cap inserted into the valve fixing part to prevent the air from being discharged via the through hole of the valve, and closing the through hole of the valve.
Abstract:
Apparatus for puncturing a gas filled bottle uses a spring force upon an inflator tack, which punctures the gas filled bottle, rather than a manual or explosive force. The spring force is retained prior to puncturing the bottle by a retention element disposed in a hole. The retention element is released upon actuation of the apparatus.
Abstract:
This invention gives the directions for the design and building of a vehicle which will be supported in water by the installation of a Floatation Material. The design is so that the vehicle, occupants, and cargo will be supported so that the vehicle will come to rest in the upright position and with the water level below the upper torso of the occupants. There are several demonstrations presented on a regular basis which show how to escape from a vehicle that has suddenly become immersed in water: a lake, river, etc. Escaping is portrayed as a fairly simple procedure when performed by someone who is coached through the process, and by an individual who knows the vehicle is supported by a crane. The design presented in this invention provides a vehicle that will float while requiring no effort from the occupants, nor does it depend on the performance of some mechanism, i.e. switches, relays, or some mechanically activated procedure that requires intervention by the occupant. Several options were considered and examined before the design presented in this invention was chosen as the best, and safest. There have been designs using inflatable objects. The inflatable object approach has several shortcomings. The most obvious is that the vehicle may not assume the upright position. The material-supported vehicle design presented in this invention, when implemented, will generate a vehicle that will end up in the top-up position when placed in deep water. If the vehicle goes into the water top first, the vehicle will quickly correct to the top-up position.
Abstract:
A valve structure includes a valve body on which is mounted a first valve and a second valve. The first valve traverses the valve body at a first position and the second valve traverses the valve body at a second position spaced apart from the first position. The first valve may comprise a fill valve and the second valve may comprise a pressure relief valve. Alternatively, a single valve structure may incorporate both the fill and pressure relief functions. The valve structure may be incorporated with a bladder made of a flexible and elastic material. In this arrangement, the valve body is positioned in a valve receiving opening in the bladder material and is sealed to the bladder material around the periphery of the valve receiving opening so as to define a sealed bladder interior with the bladder material. Such a valve and bladder combination may be used together with a hull tube to form a portion of an inflatable hull for a boat.
Abstract:
The invention comprises a sensor to detect submergence of an automobile, a control means for generating output signals, air bags, driving units for the air bags, and a unit for generating and broadcasting an emergency signal. The device according to the present invention further comprises an emergency switch driven by sensing that the automobile is not started by the key switch but forcibly started. According to the present invention, submergence of an automobile can be prevented and the human life can be protected, and also by the generation of an emergency signal in case of abnormal manipulation of a key due to a car theft and the like, the property can be protected.