IP Library Granted Patent US 11,510,783
Granted Patent B2
US 11,510,783 · App. 17/401,977 · Granted Nov 29, 2022

Laser-produced porous surface

Inventors: William O'Neill (Cambridge, GB); Christopher J. Sutcliffe (Liverpool, GB); Eric Jones (Limerick, IE); Robin Stamp (Montclair, NJ)
Assignee: Howmedica Osteonics Corp.
A61F2/30771A61F2/30907A61F2/30965B22F3/1103B22F3/1115B22F7/004B22F10/20B22F10/28B22F10/366B22F10/38B23K26/382B23K26/40B29C64/153B33Y10/00B33Y70/00B33Y80/00C23C4/02C23C4/12C23C4/18C23C24/04C23C24/10C23C26/02A61F2/3094A61F2/30767A61F2/34A61F2/3662A61F2/389A61F2/3859A61F2002/30006A61F2002/30011A61F2002/3092A61F2002/3093A61F2002/3097A61F2002/30153A61F2002/30199A61F2002/30261A61F2002/30915A61F2002/30929A61F2002/30968A61F2002/30971A61F2230/0019A61F2230/0063A61F2230/0082A61F2250/0015A61F2250/0023A61F2310/00017A61F2310/00023A61F2310/00029A61F2310/00095A61F2310/00131A61F2310/00401A61F2310/00407A61F2310/00413A61F2310/00491A61F2310/00544B22F2301/15B22F2301/20B22F2301/205B22F2301/35B22F2999/00B23K2101/35B23K2103/05B23K2103/08B23K2103/14B23K2103/26B23K2103/50Y02P10/25
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Quick Facts
Patent No.
US 11,510,783
App. No.
17/401,977
Granted
Nov 29, 2022
Kind
B2
Abstract

The present invention disclosed a method of producing a three-dimensional porous tissue in-growth structure. The method includes the steps of depositing a first layer of metal powder and scanning the first layer of metal powder with a laser beam to form a portion of a plurality of predetermined unit cells. Depositing at least one additional layer of metal powder onto a previous layer and repeating the step of scanning a laser beam for at least one of the additional layers in order to continuing forming the predetermined unit cells. The method further includes continuing the depositing and scanning steps to form a medical implant.

Claims (31)

1. An orthopedic implant comprising:

porous metallic first and second structures, at least a portion of either one or both of the first and second structures being defined by polygonal porous cells; and

a metallic intermediate structure attached to and located between the first and the second structures, the intermediate structure having a different porosity than the first and the second structures.

2. The orthopedic implant of claim 1 , wherein the first structure includes pores having a pore size that exceeds 80 μm in diameter.

3. The orthopedic implant of claim 2 , wherein the pores of the first structure have a maximum pore size that is less than 800 μm in diameter.

4. The orthopedic implant of claim 2 , wherein the second structure includes pores having a pore size that exceeds 80 μm in diameter, and wherein the pores of the first and the second structures have a maximum pore size that is less than 400 μm in diameter.

5. The orthopedic implant of claim 1 , wherein the cells of the first structure have an irregular shape.

6. The orthopedic implant of claim 1 , wherein the intermediate structure is directly attached to the first and the second structures.

7. The orthopedic implant of claim 1 , wherein the intermediate structure is solid.

8. The orthopedic implant of claim 1 , further comprising an opening passing through a thickness of the implant, the opening having a diameter substantially larger than a diameter of pores of the first and the second structures.

9. The orthopedic implant of claim 1 , wherein the first structure includes a plurality of pores and surrounds a first hole larger than each of the plurality of pores of the first structure, and wherein the first hole extends through a thickness of the first structure.

10. The orthopedic implant of claim 9 , wherein the second structure includes a plurality of pores and surrounds a second hole larger than each of the plurality of pores of the second structure, and wherein the second hole extends through a thickness of the first structure.

11. The orthopedic implant of claim 1 , wherein the first structure includes a plurality of pores that correspond to a computer-aided design model.

12. The orthopedic implant of claim 1 , wherein the first structure has a graded porosity.

13. The orthopedic implant of claim 1 , wherein the shape of at least some of the cells vary from the shape of other ones of the cells.

14. The orthopedic implant of claim 1 , where the cells are tessellated unit cells.

15. The orthopedic implant of claim 14 , wherein the unit cells are in the shape of a tetrahedron, dodecahedron or octahedron.

16. The orthopedic implant of claim 1 , wherein the first structure, the second structure, and the intermediate structure are integrated.

17. The orthopedic implant of claim 1 , wherein the first, second, and intermediate structures are the same material.

18. An orthopedic implant comprising:

porous metallic first and second structures, at least a portion of either one or both of the first and second structures being defined by irregular porous cells; and

a metallic intermediate structure attached to and located between the first and the second structures, the intermediate structure having a different porosity than the first and the second structures.

19. The orthopedic implant of claim 18 , wherein the first structure includes pores having a pore size that exceeds 80 μm in diameter.

20. The orthopedic implant of claim 19 , wherein the pores of the first structure have a maximum pore size that is less than 800 μm in diameter.

21. The orthopedic implant of claim 20 , wherein the second structure includes pores having a pore size that exceeds 80 μm in diameter, and wherein the pores of the first and the second structures have a maximum pore size that is less than 400 μm in diameter.

22. The orthopedic implant of claim 18 , wherein the first, second, and intermediate structures are the same material.

23. An orthopedic implant comprising:

porous metallic first and second structures, at least a portion of either one or both of the first and second structures being defined by polygonal porous cells having an irregular shape; and

a solid metallic intermediate structure directly attached to and located between the first and the second structures.

24. The orthopedic implant of claim 23 , wherein the first structure includes pores having a diameter between 80 μm and 800 μm.

25. The orthopedic implant of claim 23 , wherein the first, second, and intermediate structures are the same material.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2021
From: SUTCLIFFE, CHRISTOPHER J.; JONES, ERIC; STAMP, ROBIN
To: HOWMEDICA OSTEONICS CORP.
Reel/Frame 057306/0089 →
NUNC PRO TUNC ASSIGNMENT Recorded Aug 27, 2021
From: HOWMEDICA OSTEONICS CORP.
To: HOWMEDICA OSTEONICS CORP.; THE UNIVERSITY OF LIVERPOOL
Reel/Frame 057307/0454 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2021
From: O'NEILL, WILLIAM; SUTCLIFFE, CHRISTOPHER J.; JONES, ERIC
To: HOWMEDICA OSTEONICS CORP.
Reel/Frame 057239/0442 →
Continuity (12)
Continuation 17176842 · Feb 16, 2021
Continuation 16690307 · Nov 21, 2019
Continuation 14671545 · Mar 27, 2015
Continuation 13605354 · Sep 6, 2012
Continuation 12846327 · Jul 29, 2010
Continuation In Part 12843376 · Jul 26, 2010
Continuation 12386679 · Apr 22, 2009
Continuation 10704270 · Nov 7, 2003
Continuation 11027421 · Dec 30, 2004
Provisional Application 60425657 · Nov 12, 2002
Provisional Application 60424923 · Nov 8, 2002
Related Publication 20210379884A1 · Dec 9, 2021