Tap for a storage container, container provided with such a tap, and corresponding use
The invention relates to a tap including a body, which is provided with a gas inlet that is to be connected to the storage space of a container, a bleed-off circuit, including a downstream end, characterized in that the tap further includes a circuit for selectively controlling the movement of the isolation valve into the first position for opening the bleed-off circuit, the control circuit including a first end connected to the valve, and a second end that can be selectively coupled to an actuator of a gas bleed-off member, in order to selectively electrically control the movement of the valve into the position for opening the bleed-off circuit.
1. A tap for a pressurized gas storage container, comprising
a body fitted with a gas inlet intended to be connected to the storage space of a container,
a bleed-off circuit formed in the body and comprising an upstream end intended to be connected fluidly to the storage space of a container and a downstream end intended to be connected fluidly and selectively with a gas bleed-off member,
a filling circuit formed in the body and comprising a first end intended to be connected selectively to a filling member of the container and a second end intended to be connected to the storage space of the container,
the bleed-off circuit comprising an isolation valve and a pressure-release member for the gas bled off at a given fixed or adjustable pressure,
the tap also including a member for manually controlling the movement of the isolation valve, the control member being selectively movable to a first position and to a second position, in which in the first position thereof the control member moves the isolation valve to an open position of the bleed-off circuit, and in the second position thereof the control member moves the isolation valve to a closed position of the bleed-off circuit,
wherein the tap also includes, in the body, a circuit for controlling the selective movement of the isolation valve to the first position thereof opening the bleed-off circuit, the control circuit having a first end linked to the valve and a second end selectively connectable to an actuator of the gas bleed-off member, to electrically and selectively control the movement of the valve to the position thereof opening the bleed-off circuit.
2. The tap of claim 1 , wherein the isolation valve and the pressure-release member for the gas bled off are distinct elements arranged in series in the bleed-off circuit.
3. The tap of claim 1 , wherein, when the control member is in the first position thereof, the isolation valve is mechanically blocked in the position thereof opening the bleed-off circuit, regardless of the state of the control circuit and the state of any electrical actuator connected to the control circuit.
4. The tap of claim 1 , wherein, when the control member is in the second position thereof, the isolation valve is mechanically blocked in the position thereof closing the bleed-off circuit, regardless of the state of the control circuit and the state of any electrical actuator connected to the control circuit.
5. The tap of claim 1 , wherein the control member can be moved to a third neutral position in which the isolation valve can be moved between the positions thereof opening and closing the bleed-off circuit as a function of the state of the control circuit and any electrical actuator connected to the control circuit.