USE OF Ti AND Nb CEMENTED TiC IN PROSTHETIC JOINTS
Use of Ti and Nb cemented in TiC in prosthetic joints, such as prosthetic joint components made from sintered superhard materials.
1 . A method for making a sintered superhard prosthetic joint component comprising:
forming a TiC substrate, said substrate including TiC and a carbide forming agent selected from the group consisting of Ti, Nb and a combination of Ti and Nb,
placing said substrate in a can,
said substrate being configured to achieve a shape and dimension desirable for use in a prosthetic joint component, and
placing said can in a press and exposing said can and its contents to high pressure and high temperature in order to cause sintering of said substrate in order to form a sintered joint component.
2 . A method as recited in claim 1 wherein said carbide forming agent chemically bonds with TiC during said sintering step.
3 . A method as recited in claim 1 wherein the method comprises placing the substrate into a can with diamond between said can and at least a portion of said substrate and placing said can into said press.
4 . A method as recited in claim 3 wherein said diamond chemically bonds to said carbide forming agent.
5 . A method as recited in claim 1 wherein said substrate is spherical.
6 - 7 . (canceled)
8 . A method as recited in claim 1 wherein said sintered polycrystalline diamond compact joint component diamond table has an exterior surface at least a portion of which is non-planar.
9 . A method as recited in claim 1 wherein said carbide forming agent includes both Ti and Nb.
10 - 17 . (canceled)
18 . A method as recited in claim 1 wherein said can includes Nb.
19 . A method for making a sintered superhard prosthetic joint component comprising:
forming a substrate, said substrate comprising a mixture of a carbide and a carbide forming agent selected from the group consisting of Ti, Nb and combinations of Ti and Nb,
forming the substrate into a shape configured for use as a prosthetic joint; and
placing said substrate in a press and exposing said can and its contents to high pressure and high temperature in order form a joint component.
20 - 27 . (canceled)
28 . A method as recited in claim 19 wherein said carbide forming agent includes both Ti and Nb.
29 - 35 . (canceled)
36 . A method as recited in claim 19 , wherein the method comprises placing the substrate into a Nb can and placing said can and substrate into said press.
37 . A method as recited in claim 19 , wherein the method comprises placing the substrate in a can with a diamond layer between the substrate and the can and placing said can into said press.
38 . A sintered prosthetic joint comprising:
a substrate, the substrate including a carbide and a carbide forming agent,
the carbide and carbide forming agent being mixed and sintered in a press at a high temperature and pressure in order to sinter the carbide and carbide forming agent.
39 . The sintered prosthetic joint of claim 38 , further comprising:
a diamond layer formed on at least a portion of the surface of said substrate, and
wherein the diamond layer and substrate are placed in a press at high pressure and temperature so as to sinter the diamond to the substrate.
40 . The sintered prosthetic joint of claim 38 , wherein the substrate is placed in a metal can and the substrate and metal can are placed in a press to sinter said substrate.
41 . The sintered prosthetic joint of claim 38 , wherein the substrate and diamond layer are placed in a metal can and the substrate, diamond and metal can are placed in a press to sinter said substrate.
42 . The sintered prosthetic joint of claim 38 , wherein the carbide includes TiC.
43 . The sintered prosthetic joint of claim 38 , wherein the carbide forming agent is selected from a list consisting of Ti, Nb, and combinations of Ti and Nb.
44 . The sintered prosthetic joint of claim 38 , wherein the substrate comprises a mixture of TiC and Ti.