Multi-piece twist drill head and twist drill including the same
One non-limiting aspect of the present disclosure is directed to a multi-piece twist drill head. The multi-piece twist drill head includes a core piece formed from a first hard material, and a peripheral piece formed from a second hard material. The core piece and peripheral piece each comprise a cutting edge and are adapted to mate to provide a central region and a peripheral region, respectively, of the multi-piece twist drill head. A twist drill including the multi-piece twist drill head is also disclosed.
1. A multi-piece twist drill head comprising:
a core piece formed from a first hard material and comprising a cutting edge; and
a peripheral piece formed from a second hard material and comprising a cutting edge and at least one helical flute,
wherein the core piece and peripheral piece are adapted to mate to provide a central region and a peripheral region, respectively, of the multi-piece twist drill head;
wherein the peripheral piece comprises a cavity and the core piece is disposed in the cavity;
wherein the core piece and the peripheral piece are adapted to be mated by permanent mechanical joining comprising at least one of soldering, welding, brazing, hydraulic press fitting, and adhering and
wherein the core piece and peripheral piece are each configured to be removed from the twist drill head and replaced.
2. The multi-piece twist drill head of claim 1 , wherein:
the first hard material is selected from the group consisting of a cemented carbide, a ceramic, and a diamond-containing material; and
the second hard material is selected from the group consisting of a cemented carbide, a ceramic, and a diamond-containing material.
3. The multi-piece twist drill head of claim 1 , wherein the first hard material and the second hard material are different grades of the same material selected from the group consisting of cemented carbide, ceramic, and diamond-containing material.
4. The multi-piece twist drill head of claim 1 , wherein the second hard material exhibits greater wear resistance than the first hard material.
5. The multi-piece twist drill head of claim 1 , wherein the cutting edge of the core piece forms a twist drill tool tip geometry, and the cutting edge of the peripheral piece forms a partial drill front geometry and side cutting geometry.
6. The multi-piece twist drill head of claim 1 , wherein a periphery of the cavity of the peripheral piece is asymmetric relative to a rotational axis of the multi-piece twist drill head.
7. The multi-piece twist drill head of claim 1 , wherein a periphery of the core piece is asymmetric relative to a rotational axis of the multi-piece twist drill head.
8. The multi-piece twist drill head of claim 1 , wherein the cutting edge of the core piece is aligned with the cutting edge of the peripheral piece when the peripheral piece is mated with the core piece.
9. A twist drill comprising:
a body portion including a first end and a second end, the body portion including a helical flute on a periphery thereof;
an attachment portion at the first end of the body portion, wherein the attachment portion is adapted to connect the multi-piece twist drill to a machine tool; and
a multi-piece twist drill head adapted to attach to the second end of the body portion and including
a core piece formed from a first hard material, and
a peripheral piece formed from a second hard material and comprising a cutting edge and at least one helical flute,
wherein the core piece and peripheral piece are adapted to mate to provide a central region and a peripheral region, respectively, of the multi-piece twist drill head;
wherein the peripheral piece comprises a cavity and the core piece is disposed in the cavity; and
wherein the core piece and the peripheral piece are adapted to be mated by permanent mechanical joining comprising at least one of soldering, welding, brazing, hydraulic press fitting, and adhering.
10. The twist drill of claim 9 , wherein:
the first hard material is selected from the group consisting of a cemented carbide, a ceramic and a diamond-containing material; and
the second hard material is selected from the group consisting a cemented carbide, a ceramic and a diamond-containing material.
11. The twist drill of claim 9 , wherein the first hard material and the second hard material are different grades of the same material selected from the group consisting of cemented carbide, ceramic, and diamond-containing material.
12. The twist drill of claim 9 , wherein the second hard material exhibits greater wear resistance than the first hard material.
13. The twist drill of claim 9 , wherein the core piece comprises a cutting edge.
14. The twist drill of claim 13 , wherein the cutting edge of the core piece forms a twist drill tool tip geometry, and the cutting edge of the peripheral piece forms a partial drill front geometry and side cutting geometry.
15. The twist drill of claim 13 , wherein the cutting edge of the core piece is aligned with the cutting edge of the peripheral piece when the peripheral piece is mated with the core piece.
16. The multi-piece twist drill of claim 13 , wherein the cutting edge of the core piece is aligned with the cutting edge of the peripheral piece when the core piece is disposed in the cavity of the peripheral piece.
17. The twist drill of claim 9 , wherein the core piece and peripheral piece are each configured to be removed from the twist drill head and replaced.
18. The twist drill of claim 9 , wherein a periphery of the cavity of the peripheral piece is asymmetric relative to a rotational axis of the twist drill.
19. The multi-piece twist drill of claim 9 , wherein the at least one helical flute of the peripheral piece is aligned with the helical flute of the body portion.