Use of Ti and Nb cemented in TiC in prosthetic joints
View Patent ↗An improved composition of titanium sintered titanium carbide is provided. The composition provides an improved degree of strength and toughness and improved compatibility with medical imaging. The composition provides good compatibility with sintered polycrystalline diamond, achieving a good mechanical fit in terms of the combined compressibility and thermal expansion during the sintering process to minimize stress or cracking between the substrate and the diamond layer.
1. A prosthetic joint comprising:
a sintered carbide substrate forming the acetabular cup of a hip joint, the substrate comprising:
titanium carbide at about 87.5 percent of the substrate; and
sintering metal selected from the group consisting of titanium, niobium, tantalum, and alloys thereof, the sintering metal having a weight of about 12.5 percent of the substrate;
an articulation surface formed on the inside of the acetabular cup substrate; and wherein the articulation surface comprises a layer of sintered polycrystalline diamond
a bone attachment surface for attaching the substrate to a bone attached to the outside of the acetabular cup substrate.
2. The prosthetic joint of claim 1 , wherein the bone attachment surface comprises plasma spray titanium or a spherical titanium metal bead porous surface.
3. A prosthetic joint comprising:
a sintered carbide substrate forming the primary structural member of a prosthetic spine joint, the sintered carbide substrate comprising:
titanium carbide at about 87.5 percent weight of the substrate; and
titanium sintering metal the recitation of at about 12.5 percent weight of the substrate;
an articulation surface formed and attached on a single side of the sintered carbide substrate, the articulation surface is a layer of sintered polycrystalline diamond and providing movement of the prosthetic joint; and
a bone attachment structure attached to the sintered carbide substrate for attaching the sintered carbide substrate to a patient's vertebrae.
4. A prosthetic joint comprising:
a sintered carbide substrate forming the primary structural member of the prosthetic joint, the sintered carbide substrate comprising:
titanium carbide; and
sintering metal selected from the group consisting of titanium, niobium, tantalum, and alloys thereof; and
wherein the substrate comprises about 87.5 percent carbide by weight and about 12.5percent sintering metal by weight;
an articulation surface formed on the substrate, the articulation surface providing bearing geometry to provide movement of the artificial joint; and
a bone attachment structure attached to the substrate.
5. The prosthetic joint of claim 4 , wherein the substrate is a femoral ball of approximately 40 mm diameter, and wherein the articulation surface comprises a layer of sintered polycrystalline diamond formed on the outside of the femoral ball.
6. The prosthetic joint of claim 4 , wherein the substrate is a femoral ball of approximately 30 mm diameter, and wherein the articulation surface comprises a layer of sintered polycrystalline diamond formed on the outside of the femoral ball.
7. The prosthetic joint of claim 4 , wherein the sintered carbide substrate is an acetabular cup, wherein the articulation surface is a layer of sintered polycrystalline diamond attached to the acetabular cup for providing motion of the prosthetic joint.
8. The prosthetic joint of claim 4 , wherein the prosthetic joint is a prosthetic spine joint, wherein the articulation surface comprises a layer of sintered polycrystalline diamond attached to a single side of the substrate.
9. The prosthetic joint of claim 4 , wherein the articulation surface is a layer of sintered polycrystalline diamond attached to a single side of the substrate.