Fluid connector with resealable membrane valve
An O-ring membrane valve, including an O-ring, and a resealable membrane connected to the O-ring, the resealable membrane including a first surface, a second surface, and a slit extending from the first surface to the second surface. The O-ring membrane valve may be assembled with a fluid connector, the fluid connector including a body, having a first through-bore and a first groove arranged circumferentially within the first through-bore.
1. A fluid connector, comprising:
a body, including:
a first through-bore; and,
a first groove arranged circumferentially within the first through-bore, the first groove forming a first axial wall and a second axial wall spaced apart from the first axial wall; and,
an O-ring membrane valve including:
an O-ring arranged in the first groove, the O-ring capable of being arranged between and spaced apart from the first axial wall and the second axial wall; and,
a resealable membrane connected to the O-ring, the resealable membrane comprising a slit;
wherein the O-ring is operatively arranged to extend out of the first groove and into the first through-bore.
2. The fluid connector as recited in claim 1 , wherein the resealable membrane is conical and comprises a vertex, the slit arranged at least partially on the vertex.
3. The fluid connector as recited in claim 1 , wherein the O-ring has a round cross-sectional geometry.
4. The fluid connector as recited in claim 1 , wherein the O-ring has a torus geometry.
5. The fluid connector as recited in claim 1 , wherein the body further comprises:
a radially outward facing surface including a second groove; and,
a snap ring arranged in the second groove and extending into the first through-bore.
6. The fluid connector as recited in claim 1 , wherein the body is arranged for connection to a component to be filled with a fluid and the O-ring membrane valve is arranged to seal the fluid within the component.
7. The fluid connector as recited in claim 6 , wherein:
in a sealed state, the fluid exerts a force on the membrane such that the slit is sealed shut; and,
in an unsealed state, a tube is inserted into the body to deform the membrane such that the slit is opened and the fluid may flow into or out of the component.
8. The fluid connector as recited in claim 7 , wherein the tube is a tube end form, comprising:
a second through-bore;
a radially outward facing surface arranged to displace the membrane and open the slit; and,
a shoulder arranged to lock into the body.
9. The fluid connector as recited in claim 8 , wherein when the tube end form is fully engaged in the body:
the radially outward facing surface compresses the O-ring in the first groove;
the slit is fully opened and concentrically arranged around the radially outward facing surface;
the shoulder is locked into the body; and,
the fluid connector is in the unsealed state.
10. The fluid connector as recited in claim 7 , wherein the tube is a probe, comprising:
a second through-bore; and,
a radially outward facing surface arranged to displace the membrane and open the slit.
11. The fluid connector as recited in claim 1 , further comprising a tube end form including:
a second through-bore;
a radially outward facing surface arranged to displace the membrane and open the slit; and,
a shoulder arranged to lock into the body.