Abstract:
A device for volumetric metering a liquid biologic sample is provided. The device includes an initial chamber, a second chamber, a third chamber, a first valve, a second valve and a third valve. The chambers are each configured so that liquid sample disposed in the respective chamber is subject to capillary forces. Each chamber has a volume, and the volume of the initial chamber is greater than the volume of either the second or the third chambers. The valves each have a burst pressure. The burst pressure of the first valve is greater than the third burst pressure. The first valve is in fluid communication with the second chamber. The second valve is disposed between, and is in fluid communication with, the initial chamber and the third chamber. The third valve is in fluid communication with the third chamber.
Abstract:
Two-stage, sequential operation protective assemblies are provided, including a primary protective device (20) having an element (32) which shifts in response to operation thereof (preferably a rupturable burst member (35)), together with a secondary protective device (22). An actuating assembly (24) interconnects the primary and secondary protective devices (20, 22) and has an actuating cable assembly (28) preferably including a cable (94) and a frangible component (86). In certain embodiments, an operator (28) for the secondary device (22) may be provided which includes an actuator (106) carried by the cable (94). Upon operation of the primary protective device (20), the cable (94) and frangible component (86) are tensioned and translated in a first direction. The component (86) then severs, which causes operation of the secondary protective device (22).
Abstract:
A device for preventing a primary relief valve in a mud system from opening at a pressure lower than a nominal opening pressure includes a flow restrictor between a mud pump of the mud system and the primary relief valve. In addition, the device includes a cavity between the flow restrictor and the primary relief valve.
Abstract:
A pressure control system for controlling pressure in a tank is provided. The pressure control system includes a pressure relief valve and a rupture disc subassembly. The pressure relief valve is connected to the tank. The rupture disc subassembly is located between the pressure relief valve and the tank and is connected to the tank. The pressure relief valve is connected such that removal of the pressure relief valve does not affect the connection of the rupture disc subassembly to the tank.
Abstract:
Systems and methods for venting gas from a gas regulator in the event of overpressurization of the gas regulator are provided. A bonnet for a gas regulator that includes one or more apertures through which gas may vent. The bonnet may be made of a moldable synthetic plastic material, such as glass filled nylon.
Abstract:
An apertured rupture disc support member (32, 90) is provided for use in a rupture disc assembly (70). A rupture disc (30, 30a) comprising one or more embossed segments (80) that are complemental with the support member apertures (56) is also disclosed. The pressure relief assembly (12) is particularly suited for use in sanitary pressure relief applications.
Abstract:
A frost proof sillcock system for diverting water away from a building when a tubular body of a sillcock is broken and allowing an individual to easily repair a broken sillcock. The frost proof sillcock system generally includes an outer tube fluidly connected to a supply pipe within a building and a sillcock removably connected within the outer tube. If the sillcock ruptures, the water is diverted outside of the building by the outer tube. The sillcock is replaced by rotating the sillcock to disconnect from the outer tube thereby allowing a replacement sillcock to be installed.
Abstract:
The invention relates to a plant for recovering a polluting fluid contained in the tank (4) of a sunken vessel (1) comprising a plurality of pipes (5) fixed to a deck (2), wherein each pipe comprises a first and second ends and, according to the beaching position of the sunken vessel, can form means for introducing a pressurized water into the tank or means for removing the polluting fluid outside thereof. Said invention is characterized in that said pipes are positioned in such a way that the ends thereof enters near each top corner of the tank and the second ends thereof are accessible from the inside of the sunken vessel.
Abstract:
A disposable urine bag is provided. The bag includes an upper delimiting edge, a lower delimiting edge and lateral delimiting edges defining a space in the bag. The lower delimiting edge includes a drain valve, whose first drain mouthing in a first hollow element communicates with the space in the bag, and whose second mouthing in a second element is situated outside the delimiting edges of the bag. The drain valve is a disposable valve including a seal between the first and the second element and at least one indicator situated in the area of the seal. A disposable urine bag is provided whereby the drain valve seal may be broken without using significant finger strength and without a risk of the user being soiled with urine.
Abstract:
An apertured rupture disc support member (32, 90) is provided for use in a rupture disc assembly (70). A rupture disc (30, 30a) comprising one or more embossed segments (80) that are complemental with the support member apertures (56) is also disclosed. The pressure relief assembly (12) is particularly suited for use in sanitary pressure relief applications.