MULTIPLE RIDGE DIAMOND COMPACT FOR DRILL BIT AND DRILL BIT
20210277722 · 2021-09-09
Inventors
Cpc classification
E21B10/5673
FIXED CONSTRUCTIONS
International classification
Abstract
The disclosure relates to a multiple ridge diamond compact for a drill bit, comprising a hard alloy substrate (cemented carbide substrate) (102) and a diamond composite layer (101), wherein an end surface of the diamond composite layer is provided with at least two ridges angled relative to each other, and converging ends of two adjacent ridges extend to an edge of the diamond composite layer (101) so as to form a concave cutting edge portion on the edge. The plurality of ridges angled relative to each other are set as a cutting surface group to simultaneously cut a formation, the formation is first pre-crushed by means of the ridges angled relative to each other, the ridges first enter the formation from sharp surfaces (the converging ends of the ridges), a crushing pit in the direction of the ridges is further enlarged, and then the formation is further extruded and crushed by inclined surfaces on two sides of the group of ridges, such that the cutting surfaces thereof have a plowing effect, thus improving the crushing and drilling performance of the diamond compact, reducing the drilling cutting resistance, and further increasing the mechanical drilling speed (rate of penetration) of the diamond drill bit.
Claims
1. A multiple ridge diamond compact for a drill bit, comprising a cemented carbide substrate (102) and a diamond composite layer (101), wherein the end surface of the diamond composite layer is provided with at least two ridges angled relative to each other, and converging ends of two adjacent ridges extend to the edge of the diamond composite layer (101) to form a concave cutting edge portion on the edge.
2. The multiple ridge diamond compact for a drill bit according to claim 1, wherein the edge of the diamond composite layer (101) is chamfered, so that a tapered surface is formed at the circumferential edge of the diamond composite layer (101), and the tapered surface and the converging ends of the two adjacent ridges constitute the cutting edge portion.
3. The multiple ridge diamond compact for a drill bit according to claim 1, wherein the ridges extend radially.
4. The multiple ridge diamond compact for a drill bit according to claim 3, wherein there are at least three ridges, and one of the ridges is arranged along the radial direction of the diamond composite layer (101).
5. The multiple ridge diamond compact for a drill bit according to claim 1, wherein the ridges constitute a polygon.
6. The multiple ridge diamond compact for a drill bit according to claim 1, wherein there are at least two groups of ridges, each group of ridges is composed of at least two ridges angled relative to each other, and adjacent expanding ends of adjacent groups of ridges intersect in pairs within the end surface of the diamond composite layer.
7. The multiple ridge diamond compact for a drill bit according to claim 6, wherein the groups of ridges are evenly arranged along the circumference of the diamond composite layer, and the intersection of the expanding ends of the ridges of the adjacent groups is located on the middle area of the end surface of the diamond composite layer.
8. The multiple ridge diamond compact for a drill bit according to claim 1, wherein each ridge is formed by the intersection of two inclined surfaces, and a groove are disposed between adjacent inclined surfaces which are located between two adjacent ridges.
9. The multiple ridge diamond compact for a drill bit according to claim 3, wherein the expanding ends of the ridges are higher than the converging ends of the ridges.
10. The multiple ridge diamond compact for a drill bit according to claim 1, wherein an inclined angle between the ridges and the bottom plane of the cemented carbide ranges from 0 to 20 degrees.
11. The multiple ridge diamond compact for a drill bit according to claim 10, wherein the inclined angle is 0 or 15 degrees.
12. The multiple ridge diamond compact for a drill bit according to claim 1, wherein the inclined angle between the two adjacent ridges ranges from 10 degrees to 90 degrees.
13. The multiple ridge diamond compact for a drill bit according to claim 1, wherein the shape of the ridges is one of a line, a plane, a cambered surface, and a gradual curved surface.
14. The multiple ridge diamond compact for a drill bit according to claim 13, wherein the ridges are parts of a conical surface, and the conical ridges are tapered from the expanding end toward the converging end.
15. The multiple ridge diamond compact for a drill bit according to claim 1, wherein the width L of the cutting edge portion is in a range of 1 mm to 4 mm.
16. The multiple ridge diamond compact for a drill bit according to claim 15, wherein the width L of the cutting edge portion is 1.5 mm or 2 mm.
17. The multiple ridge diamond compact for a drill bit according to claim 1, wherein the radial cross section of the diamond compact is circular or elliptical.
18. A drill bit, comprising the multiple ridge diamond compact for a drill bit according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0035] The present disclosure will be further described below with reference to the accompanying drawings.
First Embodiment
[0036] As shown in
[0037] In some embodiments, the arc radius of the first ridge 104 and the second ridge 107 is 0.5 mm, and the inclined angles between the first ridge 104 and the bottom plane of the cemented carbide substrate 102 and between the second ridge 107 and the bottom plane of the cemented carbide substrate 102 are 0 degree, and the inclined angles between the first inclined surface 103 and the bottom plane of the cemented carbide substrate 102 and between the fourth inclined surface 108 and the bottom plane of the cemented carbide substrate 102 are 15 degrees. The inclined angle α between the first and second ridges 104 and 107 is 30 degrees, and the width L of the cutting edge portion between the converging ends of the first and second ridges 104 and 107 is 2 mm. The radial cross section of the multiple ridge diamond compact is circular.
[0038] In some embodiments, the shape of the ridges is one of a line, a plane, a cambered surface, and a gradual curved surface. The gradual curved surface is a part of a conical surface, and each conical ridge tapers from the expanding end toward the converging end.
[0039] In some embodiments, the diamond layer and the cemented carbide substrate are sintered under an ultra-high pressure and high temperature condition, and the bonding surface between the cemented carbide substrate and the diamond composite layer is a flat surface, a concave-convex surface or a grooved surface. Then the end surface of the diamond layer is processed into a desired shape.
Second Embodiment
[0040] As shown in
Third Embodiment
[0041] As shown in
Fourth Embodiment
[0042] As shown in
[0043] In some embodiments, the width L of the cutting edge portions is 1.5 mm.
Fifth Embodiment
[0044] As shown in
[0045] In some embodiments, the angle between the ridges and the bottom plane of the cemented carbide is 15 degrees.
Sixth Embodiment
[0046] As shown in
[0047] The present disclosure further provides a drill bit comprising the above-mentioned multiple ridge diamond compact.
[0048] The above-combined embodiments give a detailed description of the embodiments of the present disclosure, but the present disclosure is not limited to the described embodiments. For those skilled in the art, various changes, modifications, equivalent substitutions and modifications to these embodiments without departing from the principle and essential spirit of the present disclosure still fall within the protection scope of the present disclosure.