Prosthetic hip joint having polycrystalline diamond articulation surfaces and at least one solid polycrystalline diamond compact
A prosthetic joint in which at least one bearing component is made from solid diamond.
1 . A prosthetic hip joint comprising:
a femoral head including a sintered polycrystalline diamond compact,
a substrate located on said femoral head polycrystalline diamond compact, said substrate including a metal,
a femoral head diamond table sintered to said femoral head substrate on said femoral head polycrystalline diamond compact, said femoral head diamond table,
a gradient transition zone between said femoral head substrate and said femoral head diamond table in said femoral head polycrystalline diamond compact, said femoral head gradient transition zone having a substrate side and a diamond table side, said femoral head gradient transition zone having both substrate metal and diamond therein, and said femoral head gradient transition zone exhibiting a transition of ratios of percentage content of substrate metal to diamond from one side of said gradient transition zone to another such that at a first point in said femoral head gradient transition zone near said substrate side, the ratio of percentage content of substrate metal to diamond is greater than it is at a second point in said femoral head gradient transition zone closer to said diamond side than said first point,
chemical bonds between said femoral head diamond table and said femoral head substrate which tend to secure said diamond table to said substrate,
a femoral head load bearing and articulation surface on said polycrystalline diamond compact, said femoral head load bearing and articulation surface including polycrystalline diamond, said femoral head load bearing and articulation surface being formed to present a shape that is at least partially concave spherical and against which a femoral head may articulate,
an acetabular cup for articulation against said femoral head load bearing and articulation surface, said acetabular cup including a substantial region of substrate-free solid polycrystalline diamond, and
an acetabular cup load bearing and articulation surface formed from said solid polycrystalline diamond, said acetabular cup load bearing and articulation surface being formed to present a shape that is at least partially concave spherical.
2 . A joint as recited in claim 1 further comprising interstitial spaces in said acetabular cup solid polycrystalline diamond.
3 . A joint as recited in claim 2 further comprising solvent-catalyst metal present in said acetabular cup solid polycrystalline diamond interstitial spaces.
4 . A joint as recited in claim 3 wherein said interstitial spaces are filled with solvent-catalyst metal.
5 . A joint as recited in claim 1 wherein said acetabular cup solid polycrystalline diamond includes a crystalline diamond structure.
6 . A joint as recited in claim 1 wherein said acetabular cup head solid polycrystalline diamond includes diamond crystals of at least two different particle sizes.
7 . A joint as recited in claim 1 wherein said acetabular cup solid polycrystalline diamond includes a region of pores located to be adjacent bone when said acetabular cup is installed in a patient, said pores being configured to permit osseointegration of patient bone with said acetabular cup.
8 . A joint as recited in claim 1 wherein said acetabular cup solid polycrystalline diamond portion includes cavities at least some which have a size in the range of 50 to 500 microns to permit bone ingrowth therein.
9 . A joint as recited in claim 1 wherein diamond in said femoral head polycrystalline diamond compact has a coefficient of thermal expansion CTE Cd , and wherein said substrate in said acetabular cup polycrystalline diamond compact has a coefficient of thermal expansion CTE sub , and wherein CTE Cd is not equal to CTE sub .
10 . A joint as recited in claim 1 wherein said diamond in said femoral head polycrystalline diamond compact has a modulus M Cd , and wherein said substrate in said femoral head polycrystalline diamond compact has a modulus M sub , and wherein M Cd , is not equal to M sub .