IP Library Patent Application 11804044
Patent Application
App. No. 11/804,044

Metal alloy for medical devices and implants

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Quick Facts
Patent No.
US None
App. No.
11/804,044
Abstract

The present invention relates to a medical device or implant made at least in part of a high strength, low modulus metal alloy comprising Niobium, Tantalum, and at least one element selected from the group consisting of Zirconium, Tungsten and Molybdenum. The medical devices according to the present invention provide superior characteristics with regard to biocompatibility, radio-opacity and MRI compatibility.

Claims (49)

1 . A metal alloy for use in medical implants or devices, said alloy consisting essentially of:

between about 5 and 25 weight percent Niobium;

between about 0.1 and 30 weight percent Zirconium;

up to 5 weight percent in total of at least one element selected from the group consisting of Hafnium, Rhenium and Lanthanides; and

balance of Tantalum.

2 . A metal alloy for use in medical implants or devices, said alloy consisting essentially of:

between about 0.1 and 70 weight percent Niobium;

between about 0.1 and 30 weight percent in total of at least one element selected from the group consisting of Tungsten and Molybdenum;

up to 5 weight percent in total of at least one element selected from the group consisting of Hafnium, Rhenium and Lanthanides; and

a balance of Tantalum.

3 . A metal alloy for use in medical implants or devices, said alloy consisting essentially of:

between about 0.1 and 70 weight percent Niobium;

between about 0.1 and 30 weight percent in total of at least two elements selected from the group consisting of Tungsten, Zirconium and Molybdenum;

up to 5 weight percent in total of at least one element selected from the group consisting of Hafnium, Rhenium and Lanthanides; and

a balance of Tantalum.

4 . A metal alloy according to claim 1 , wherein the Lanthanide is Cerium.

5 . A metal alloy according to claim 2 , wherein the Lanthanide is Cerium.

6 . A metal alloy according to claim 3 , wherein the Lanthanide is Cerium.

7 . A metal alloy according to claim 2 , wherein the alloy comprises between 0.1 and 15 weight percent Tungsten.

8 . A metal alloy according to claim 3 , wherein the alloy comprises between 0.1 and 15 weight percent Tungsten.

9 . A metal alloy according to claim 1 , wherein the alloy comprises between 0.1 and 10 weight percent Zirconium.

10 . A metal alloy according to claim 3 , wherein the alloy comprises between 0.1 and 10 weight percent Zirconium.

11 . A metal alloy according to claim 2 , wherein the alloy comprises between 0.1 and 20 weight percent Molybdenum.

12 . A metal alloy according to claim 3 , wherein the alloy comprises between .0.1 and 20 weight percent Molybdenum.

13 . A metal alloy according to claim 2 , wherein the alloy comprises between 5 and 25 weight percent Niobium.

14 . A metal alloy according to claim 3 , wherein the alloy comprises between 5 and 25 weight percent Niobium.

15 . A metal alloy according to claim 7 , wherein the alloy comprises about 10 weight percent Niobium and about 2.5 weight percent Tungsten.

16 . A metal alloy according to claim 8 , wherein the alloy comprises about 10 weight percent Niobium and about 2.5 weight percent Tungsten.

17 . A metal alloy according to claim 7 , wherein the alloy comprises about 10 weight percent Niobium and about 7.5 weight percent Tungsten.

18 . A metal alloy according to claim 8 , wherein the alloy comprises about 10 weight percent Niobium and about 7.5 weight percent Tungsten.

19 . A metal alloy according to claim 9 , wherein the alloy comprises about 10 weight percent Niobium and about 1 weight percent Zirconium.

20 . A metal alloy according to claim 10 , wherein the alloy comprises about 10 weight percent Niobium and about 1 weight percent Zirconium.

21 . A metal alloy according to claim 9 , wherein the alloy comprises about 10 weight percent Niobium and about 3 weight percent Zirconium.

22 . A metal alloy according to claim 10 , wherein the alloy comprises about 10 weight percent Niobium and about 3 weight percent Zirconium.

23 . A metal alloy according to claim 1 , wherein the alloy provides for a uniform beta structure, which is uniform and corrosion resistant, and has the ability for conversion oxidation or nitridization surface hardening of the medical implant or device.

24 . A metal alloy according to claim 2 , wherein the alloy provides for a uniform beta structure, which is uniform and corrosion resistant, and has the ability for conversion oxidation or nitridization surface hardening of the medical implant or device.

25 . A metal alloy according to claim 3 , wherein the alloy provides for a uniform beta structure, which is uniform and corrosion resistant, and has the ability for conversion oxidation or nitridization surface hardening of the medical implant or device.

26 . A metal alloy according to claim 1 , wherein the metal alloy has a surface that is passivated by oxidation or nitridization.

27 . A metal alloy according to claim 2 , wherein the metal alloy has a surface, that is passivated by oxidation or nitridization.

28 . A metal alloy according to claim 3 , wherein the metal alloy has a surface that is passivated by oxidation or nitridization.

29 . A metal alloy according to claim 1 , wherein the metal alloy has a surface that is one of the electropolished, mechanically polished, micro blasted, roughened and sintered.

30 . A metal alloy according to claim 2 , wherein the metal alloy has a surface that is one of the electropolished, mechanically polished, micro blasted, roughened and sintered.

31 . A metal alloy according to claim 3 , wherein the metal alloy has a surface that is one of the electropolished, mechanically polished, micro blasted, roughened and sintered.

32 . A metal alloy according to claim 1 , wherein the metal alloy has a surface coated with at least one of the group consisting of a metal, a blend of metals and a ceramic.

33 . A metal alloy according to claim 2 , wherein the metal alloy has a surface coated with at least one of the group consisting of a metal, a blend of metals and a ceramic.

34 . A metal alloy according to claim 3 , wherein the metal alloy has a surface coated with at least one of the group consisting of a metal, a blend of metals and a ceramic.

35 . A metal alloy for use in medical implants or devices according to claim 1 , wherein the medical device is a stimulation device, stimulation leads or a dental device.

36 . A metal alloy for use in medical implants or devices according to claim 2 , wherein the medical device is a stimulation device, stimulation leads or a dental device.

37 . A metal alloy for use in medical implants or devices according to claim 3 , wherein the medical device is a stimulation device, stimulation leads or a dental device.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2014
From: W.C. HERAEUS GMBH & CO. KG
To: HERAEUS PRECIOUS METALS GMBH & CO. KG
Reel/Frame 032973/0477 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME TO W.C. HERAEUS GMBH AND THE EFFECTIVE DATE TO BE AS OF MAY 16, 2007 PREVIOUSLY RECORDED ON REEL 025888 FRAME 0948. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF ASSIGNOR'S INTEREST. Recorded Mar 17, 2011
From: HERAEUS HOLDING GMBH
To: W.C. HERAEUS GMBH
Reel/Frame 025971/0331 →
NUNC PRO TUNC ASSIGNMENT Recorded Mar 2, 2011
From: HERAEUS HOLDING GMBH
To: HERAEUS HOLDING GMBH
Reel/Frame 025888/0948 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2007
From: WACHTER, JURGEN; TROTZSCHEL, JENS
To: HERAEUS HOLDING GMBH
Reel/Frame 019757/0388 →