PCBN sintered compact
The present application is a new improvement in the fine-grained cubic boron nitride sintered compact which may be employed to manufacture a cutting tool. The compact contains at least 80 vol % cBN with a metallic binder system and is sintered under HPHT conditions. The improvement incorporates alloys of aluminum in the metallic binder system.
1. A sintered body, comprising:
a cBN layer, comprising 80-95 vol % cBN;
an aluminum source comprising at least one of titanium aluminide (TiAl), nickel aluminide (Ni 3 Al), or aluminum (Al);
an interface;
a substrate comprising cemented tungsten carbide (WC); and
at least one Group VIII metal, and at least one Group V, Group VI, or Group VII metal,
wherein chromium (Cr) is present at the interface as an alloy of Cr and cobalt (Co) in a diffusion layer extending from the interface into the cBN layer.
2. The sintered body of claim 1 , wherein the Group VIII metal is one of iron (Fe), Co, or nickel (Ni), and the Group V, Group VI, or Group VII metal is one of vanadium (V), Cr, or manganese (Mn).
3. The sintered body of claim 1 , wherein the Group VIII metal is Co, and the Group V, Group VI, or Group VII metal is Cr.
4. The sintered body of claim 1 , wherein the Group V, Group VI, or Group VII metal is present as an alloy with the Group VIII metal in the cemented tungsten carbide (WC) substrate.
5. The sintered body of claim 1 , wherein the Co, and Cr infiltrate the cBN layer.
6. The sintered body of claim 5 , wherein the Co, and Cr infiltrating the cBN layer are provided as at least one metal disk.
7. The sintered body of claim 5 , wherein the Co, and Cr infiltrating the cBN layer are provided as components in the cemented tungsten carbide (WC) substrate.
8. The sintered body of claim 5 , wherein the Co, and Cr infiltrating the cBN layer are provided as both metal disks, and as components in the cemented tungsten carbide (WC) substrate.
9. The sintered body of claim 1 , wherein the cBN layer is sintered to the cemented tungsten carbide (WC) substrate.