IP Library Granted Patent US 8,057,405
Granted Patent B2
US 8,057,405 · App. 12/046,990 · Granted Nov 15, 2011

Composite guidewire with drawn and filled tube construction

Assignee: Abbott Cardiovascular Systems Inc.
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Quick Facts
Patent No.
US 8,057,405
App. No.
12/046,990
Granted
Nov 15, 2011
Kind
B2
Abstract

The present invention is directed to an intracorporeal device, preferably a guidewire, and method for making the device. The guidewire of the present invention is formed, at least in part, of a composite elongate core formed, at least in part, of precipitation hardened material. The elongate core members of the present invention will have an ultimate tensile strength and modulus of elasticity greater than the same for an identically dimensioned elongate member formed from superelastic NITINOL alone.

Claims (33)

1. A heat-treated elongate member of a guide wire, comprising:

a composite elongate core;

the composite elongate core including an inner core having a precipitation hardened material and a layer having a superelastic material arranged concentrically about the inner core; and

a second layer arranged concentrically about the superelastic layer.

2. The elongate member of claim 1 , wherein the composite elongate core has a modulus of elasticity of at least 9×10 6 psi.

3. The elongate member of claim 2 , wherein the modulus of elasticity is at least 12×10 6 psi.

4. The elongate member of claim 3 , wherein the modulus of elasticity is at least 15×10 6 psi.

5. The elongate member of claim 1 , wherein the composite elongate core has an ultimate tensile strength of at least 150 ksi.

6. The elongate member of claim 5 , wherein the ultimate tensile strength is at least 180 ksi.

7. The elongate member of claim 6 , wherein the ultimate tensile strength is at least 200 ksi.

8. A heat-treated elongate member of a guide wire, comprising:

a composite elongate core having a proximal section and distal section;

wherein the composite elongate core includes an inner core having a precipitation hardened material that is surrounded concentrically by a first layer having a superelastic material;

a second layer disposed at least in part concentrically over the first layer;

wherein the precipitation hardened material includes at least two materials selected from the group consisting of nickel, cobalt, molybdenum, chromium, tungsten, and iron; and

a flexible body discrete from the first layer and at least partially overlying the distal section.

9. The elongate member of claim 8 , wherein the precipitation hardened material includes precipitation hardened stainless steel.

10. The elongate member of claim 9 , wherein the precipitation hardened material includes chromium-nickel based single stage martensitic precipitation hardened stainless steel.

11. The elongate member of claim 9 , wherein the precipitation hardened stainless steel is essentially nickel free.

12. The elongate member of claim 9 , wherein the precipitation hardened stainless steel includes less than about 1% nickel.

13. The elongate member of claim 8 , wherein the precipitation hardened material includes a cobalt based precipitation hardened alloy.

14. The elongate member of claim 13 , wherein the cobalt based alloy further includes nickel, molybdenum and chromium.

15. The elongate member of claim 14 , wherein the cobalt based alloy further includes less than about 10% by wt. iron.

16. The elongate member of claim 8 , wherein the inner core and the first layer are independently formed.

17. The elongate member of claim 8 , wherein the second layer is formed from a material similar to the inner core material.

18. A heat-treated elongate member for a guide wire, comprising:

a composite elongate core;

the composite elongate core including an inner core including a precipitation hardened material surrounded concentrically by a first layer including a superelastic material and having a proximal section and distal section;

a second layer at least partially disposed concentrically over the first layer;

wherein the precipitation hardened material includes at least two materials selected from the group consisting of nickel, cobalt, molybdenum, chromium, tungsten, and iron;

a flexible body disposed at a distal end of the distal section;

the distal section having a proximal portion and a tapered distal portion; and

wherein the precipitation hardened material and superelastic material extend from the proximal section of the elongate core to the tapered distal portion of the distal section of the elongate core and continuing through at least a part of a length of the flexible body.

Continuity (3)
Continuation 09470874 · Dec 22, 1999
Continuation In Part 09224453 · Dec 31, 1998
Related Publication 20080200879A1 · Aug 21, 2008