Limb for breathing circuit
A limb for a breathing circuit manufactured from very thin walled polymer materials has an elongate axial reinforcing spine lying freely inside the conduit and fixed to each end connector. The spine is laterally compliant but axially stiff. The spine provides resistance to tensile and compressive loads on the conduit, including that induced by prevailing internal pressures.
1. A method for manufacturing a limb for a breathing circuit comprising:
providing a flexible breathing conduit having a first conduit end and a second conduit end and having a wall thickness less than 50 μm,
locating a reinforcing mesh having a first mesh end and a second mesh end, over the outside of the flexible breathing conduit,
locating an elongate reinforcing member having a first member end and a second member end, lying freely within the flexible breathing conduit, along a non-tortuous path from the first conduit end of the flexible breathing conduit to the second conduit end of the flexible breathing conduit,
fixing a first end connector with the first conduit end of the flexible breathing conduit, the first member end of the elongate reinforcing member, and the first mesh end of the reinforcing mesh, and
fixing a second end connector with the second conduit end of the flexible breathing conduit, the second member end of the elongate reinforcing member, and the second mesh end of the reinforcing mesh, wherein the flexible breathing conduit, the reinforcing mesh, and the elongate reinforcing member are fixed only at the first end connector and the second end connector.
2. The method for manufacturing a limb for a breathing circuit as claimed in claim 1 , wherein the reinforcing mesh comprises a braided sheath.
3. The method for manufacturing a limb for a breathing circuit as claimed in claim 1 , wherein the reinforcing mesh comprises a braided tube braided from polyethylene terephthalate monofilaments.
4. The method for manufacturing a limb for a breathing circuit as claimed in claim 1 , wherein the reinforcing mesh is configured to constrict radially when the reinforcing mesh is stretched longitudinally.
5. The method for manufacturing a limb for a breathing circuit as claimed in claim 4 , wherein the flexible breathing conduit includes a helical reinforcing bead.
6. The method for manufacturing a limb for a breathing circuit as claimed in claim 5 , wherein the helical reinforcing bead is configured to resist the radial constriction of the reinforcing mesh.
7. The method for manufacturing a limb for a breathing circuit as claimed in claim 1 , further comprising providing a heater wire.
8. A limb for a breathing circuit comprising:
a conduit having a first conduit end and a second conduit end and having a wall thickness less than 50 μm,
an elongate reinforcing member having a first member end and a second member end, lying freely within the conduit, along a non-tortuous path from the first conduit end of the conduit to the second conduit end of the conduit,
a first connector fixed to the first conduit end of the conduit and the first member end of the elongate reinforcing member,
a second connector fixed to the second conduit end of the conduit and the second member end of the elongate reinforcing member, and
a braided sheath surrounding the conduit and being fixed at and around one sheath end to the first connector and at and around the other sheath end to the second connector, wherein the conduit, the braided sheath, and the elongate reinforcing member are fixed only at the first connector and the second connector.
9. The limb for a breathing circuit as claimed in claim 8 , wherein the braided sheath is a braided tube braided from polyethylene terephthalate monofilaments.
10. The limb for a breathing circuit as claimed in claim 8 , wherein the braided sheath is configured to constrict radially when the braided sheath is stretched longitudinally.
11. The limb for a breathing circuit as claimed in claim 10 , wherein the conduit includes a helical reinforcing bead.
12. The limb for a breathing circuit as claimed in claim 11 , wherein the helical reinforcing bead is configured to resist the radial constriction of the braided sheath.
13. The limb for a breathing circuit as claimed in claim 8 , wherein the conduit is flexible.
14. The limb for a breathing circuit as claimed in claim 8 , further comprising a heater wire.
15. The limb for a breathing circuit as claimed in claim 14 , wherein the heater wire is associated with the elongate reinforcing member.
16. The limb for a breathing circuit as claimed in claim 14 , wherein the heater wire is not associated with the elongate reinforcing member.