Pointed working ends on a bit
US-2015354285-A1 · Dec 10, 2015 · US
US9644429B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9644429-B2 |
| Application number | US-201414231834-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 1, 2014 |
| Priority date | Apr 1, 2014 |
| Publication date | May 9, 2017 |
| Grant date | May 9, 2017 |
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Official abstract text for this publication.
The present disclosure provides a drill bit having cutters of different geometries, such as the combination of round cutters and scribe cutters. The drill bit includes at least one radial location at which both a round cutter and a scribe cutter are disposed. Thus, the drill bit leverages the high cutting efficiency of the scribe cutter as well as the high impact resistance of the round cutter. Additionally, the round cutter and the scribe cutter have the same maximum distance from the drill bit. Thus, the round cutter and the scribe cutter which share the same radial location contact the rock formation at substantially the same time when used in a drilling operation.
Opening claim text (preview).
What is claimed is: 1. A drill bit, comprising: a bit body comprising a surface center; a first blade disposed on the bit body, the first blade comprising a first cutter of a first shape disposed on the first blade; a second blade disposed on the bit body, the second blade comprising a second cutter of a second shape disposed on the second blade; wherein a center of the first cutter is disposed at a first radial distance from the surface center of the bit body; wherein a center of the second cutter is disposed at the first radial distance from the surface center of the bit body; wherein the first and second cutters are disposed at different locations on the bit body; wherein the point on the first cutter furthest away from the bit body is a tip of the first shape that is at a second radial distance from the surface center of the bit body; wherein the point on the second cutter furthest away from the bit body is a tip of the second shape that is at the second radial distance from the surface center of the bit body, and wherein: the tip of the first shape and the tip of the second shape are at a same distance from a surface of the bit body, and a height of the first cutter perpendicular to the surface of the bit body substantially corresponds to a height of the second cutter perpendicular to the surface of the bit body, and trajectories of the height of the first cutter and the height of the second cutter 100% overlap each other during rotary motion of the bit. 2. The drill bit of claim 1 , wherein the first cutter comprises a first diamond table fabricated from a first diamond material and the second cutter comprises a second diamond table fabricated from a second diamond material, wherein the first diamond material and the second diamond material have different abrasion and/or impact properties. 3. The drill bit of claim 1 , further comprising: a cone region radially adjacent the surface center of the bit body; a nose region radially adjacent the cone region; a shoulder region radially adjacent the nose region; and a gauge region radially adjacent the shoulder region, wherein the first blade extends from and through the gauge region to and through the cone region. 4. The drill bit of claim 3 , wherein the cone region comprises one or more cutters of the first geometry, the nose region comprises one or more cutters of the first geometry and one or more cutters of the second geometry, and the gauge region comprises one or more cutters of the first geometry. 5. The drill bit of claim 1 , wherein the first blade further comprises at least one cutter of the second geometry. 6. A drill bit, comprising: a bit body comprising a surface center; a first blade disposed on the bit body, the first blade comprising a first cutter of a scribe shape disposed on the first blade; a second blade disposed on the bit body, the second blade comprising a second cutter of a round shape disposed on the second blade, wherein a center of the first cutter is disposed at a first radial distance from the surface center of the bit body; wherein a center of the second cutter is disposed at the first radial distance from the surface center of the bit body; and wherein the first and second cutters are disposed at different locations on the bit body; wherein the point on the first cutter furthest away from the bit body is at a second radial distance from the surface center of the bit body: wherein the point on the second cutter furthest away from the bit body is at the second radial distance from the surface center of the bit body, wherein a height of the first cutter perpendicular to a surface of the bit body substantially corresponds to a height of the second cutter perpendicular to the surface of the bit body, so that trajectories of the height of the first cutter and the height of the second cutter 100% overlap each other during rotary motion of the bit. 7. The drill bit of claim 6 , wherein the first cutter comprises a pointed tip and the second cutter comprises a surface curvature. 8. The drill bit of claim 6 , wherein the first cutter and the second cutter comprise diamond tables fabricated from different diamond materials that have different abrasion and/or impact properties. 9. The drill bit of claim 8 , wherein at least 60% the diamond tables of the first cutter and the second cutter overlap when the first cutter and second cutter are rotated to a common radial plane. 10. The drill bit of claim 6 , wherein the first blade further comprises one or more cutters having the rounded shape. 11. The drill bit of claim 6 , wherein the second blade further comprises one or more cutters having the scribe shape. 12. A drill bit, comprising: a bit body comprising a surface center; a first blade disposed on the bit body, the first blade comprising a first cutter of a first shape disposed on the first blade; a second blade disposed on the bit body, the second blade comprising a second cutter of a second shape disposed on the second blade; wherein a center of the first cutter is disposed at a first radial distance from the surface center of the bit body; wherein a center of the second cutter is disposed at the first radial distance from the surface center of the bit body; wherein the first and second cutters are disposed at different locations on the bit body; wherein the point on the first cutter furthest away from the bit body is a tip of the first shape that is at a second radial distance from the surface center of the bit body; wherein the point on the second cutter furthest away from the bit body is a tip of the second shape that is at the second radial distance from the surface center of the bit body, and wherein a horizontal axis of the first shape and a horizontal axis of the second shape have a same width, trajectories of the horizontal axis of the first shape and the horizontal axis of the second shape 100% overlap each other during rotary motion of the bit.
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