Claims
- 1. A pumping system comprising:
a reusable component; and a disposable diaphragm pump mounted in operative association with the reusable component and being constructed and arranged to generate a high pressure fluid cutting jet, the disposable diaphragm pump including:
a pump cartridge; a diaphragm; and an annular seal in contact with a periphery of said diaphragm and a surface of said pump cartridge when the diaphragm pump is mounted in operative association with the reusable component, said annular seal constructed of a flexible material having a modulus of elasticity of a first value when the disposable diaphragm pump is not mounted in operative association with the reusable component and having a modulus of elasticity of a second value when the diaphragm pump is mounted in operative association with the reusable component, said second value being substantially greater than said first value and being within a range of moduli of elasticity typical for hard plastics soft metals.
- 2. The pumping system recited in claim 1, wherein said pump cartridge and said diaphragm define a pumping chamber therebetween.
- 3. The pumping system recited in claim 1, wherein the reusable component engages both the pump cartridge and the diaphragm and secures the pump cartridge to the diaphragm.
- 4. The pumping system recited in claim 2, wherein said annular seal forms a leaktight barrier between the diaphragm and the pump cartridge such that the pumping chamber is able to withstand fluid operating pressures of at least 1000 p.s.i, without fluid leakage through the leaktight barrier.
- 5. The pumping system recited in claim 1, wherein the pump cartridge includes an inlet disposed therein, through which a cutting fluid is communicated from a source to the pumping chamber, and an outlet disposed therein, through which the cutting fluid passes from the pumping chamber.
- 6. The pumping system recited in claim 1, wherein said annular seal is integrally formed with the of the diaphragm and wherein the annular seal and the diaphragm are constructed from the same material.
- 7. The pumping system recited in claim 1, wherein said surface of said pump cartridge includes an annular channel therein, with said annular seal being seated in said channel.
- 8. The pumping system recited in claim 7, wherein said annular seal and said annular channel have different cross-sectional shapes.
- 9. The pumping system recited in claim 8, wherein said annular seal has a circular cross-sectional shape and said annular channel has a square cross-sectional shape.
- 10. The pumping system recited in claim 1, wherein said reusable component exerts a working force on said diaphragm, when the system is in operation.
- 11. The pumping system recited in claim 10, wherein said working force is essentially uniformly applied to an external surface of said diaphragm that is deformed by said working force.
- 12. A pumping system comprising
a reusable component; and a disposable diaphragm pump mounted in operative association with the reusable component and being constructed and arranged to generate a high pressure fluid cutting jet, the disposable diaphragm pump including:
a pump cartridge; and a diaphragm; said reusable component comprising a piston pump including a force applicator constructed and arranged to exert a working force on said diaphragm, said working force being essentially uniformly applied to an external surface of the diaphragm that is deformed by the working force when the system is in operation.
- 13. The pumping system of claim 12, wherein said pump cartridge and said diaphragm define therebetween a pumping chamber.
- 14. The pumping system of claim 13, wherein said working force is sufficient to create a fluid operating pressure of at least 1000 p.s.i. within said pumping chamber.
- 15. A method for pumping a fluid with a disposable diaphragm pump, said diaphragm pump comprising a pump cartridge and a diaphragm, the method comprising:
supplying a fluid to a pumping chamber within said diaphragm pump through an inlet disposed in said pump cartridge; increasing a pressure of the fluid supplied to the pumping chamber to at least 1000 p.s.i. by applying a working force to a surface of said diaphragm; and passing the fluid from the pumping chamber through an outlet disposed in the pump cartridge.
- 16. The method as recited in claim 15, further comprising before the supplying step, the step of:
mounting the disposable diaphragm pump in operative association with a reusable component.
- 17. The method as recited in claim 16, wherein during the mounting step, the reusable component engages both the pump cartridge and the diaphragm and secures the pump cartridge and the diaphragm to each other.
- 18. The method as recited in claim 17, wherein a leaktight barrier is formed between the pump cartridge and the diaphragm during the mounting step.
- 19. The method as recited in claim 16, wherein during the increasing step, said working force is exerted by the reusable component.
- 20. The method as recited in claim 19, wherein said working force is applied essentially uniformly to a surface of the diaphragm deformed by application of the working force.
- 21. The method as recited in claim 20, wherein the reusable component exerts said working force on the diaphragm by exerting a force on a working fluid contained in the reusable component, the working fluid being in contact with the pumping chamber and isolated from the fluid supplied to the pumping chamber during the supplying step.
- 22. The method as recited in claim 15, further comprising after the increasing step the step of:
varying and controlling the pressure of the fluid passed from the pumping chamber during the passing step.
- 23. The method as recited in claim 15, further comprising after the passing step the steps of:
communicating the fluid passed from the pumping chamber through a delivery tube to an instrument having a jet orifice; and creating a fluid cutting jet by flowing the fluid through the jet orifice.
- 24. The method as recited in claim 23, further comprising after the creating step the steps of:
directing the fluid cutting jet toward a tissue of a patient; and cutting the tissue with the fluid cutting jet.
RELATED APPLICATIONS
[0001] This application is a divisional of application Ser. No. 08/486,725, filed Jun. 7, 1995, entitled FLUID JET CUTTING SYSTEM, and now pending.
Divisions (1)
|
Number |
Date |
Country |
Parent |
08486725 |
Jun 1995 |
US |
Child |
09766361 |
Jan 2001 |
US |