Stabilizer-reamer for drill string
10323462 ยท 2019-06-18
Assignee
Inventors
- Robert DELWICHE (Uccle, BE)
- Harrie Oort (Laurencekirk, GB)
- Nicholas Biggs (Aberdeen, GB)
- Etienne LAMINE (Court-Saint-Etienne, BE)
Cpc classification
B23K26/34
PERFORMING OPERATIONS; TRANSPORTING
B23K1/0008
PERFORMING OPERATIONS; TRANSPORTING
E21B17/1078
FIXED CONSTRUCTIONS
E21B10/26
FIXED CONSTRUCTIONS
International classification
B23K1/00
PERFORMING OPERATIONS; TRANSPORTING
E21B17/10
FIXED CONSTRUCTIONS
E21B10/54
FIXED CONSTRUCTIONS
E21B10/26
FIXED CONSTRUCTIONS
B23K26/34
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Stabilizer-reamer for drilling string characterized in that it comprises a mixture of diamond impregnated inserts, the mixture comprising cutting diamond impregnated inserts and wear resistant diamond impregnated inserts, said wear resistant diamond impregnated inserts having smaller diamond grain size and higher diamond concentration than said cutting diamond impregnated inserts.
Claims
1. Stabilizer-reamer for a drilling string, wherein the stabilizer-reamer comprises on its outer surface a mixture of diamond impregnated inserts, the mixture comprising cutting diamond impregnated inserts having a diamond grit size comprised between 18/20 and 40/50 mesh ASTM and wear resistant diamond impregnated inserts having a diamond grit size comprised between 40/50 and 120/140 mesh ASTM, said wear resistant diamond impregnated inserts having smaller diamond grain size and higher diamond concentration than said cutting diamond impregnated inserts.
2. Stabilizer-reamer according to claim 1, wherein the cutting diamond impregnated inserts have a diamond concentration comprised between 10% and 35% in volume, and the wear resistant diamond impregnated inserts have a diamond concentration comprised between 35% and 60% in volume.
3. Stabilizer-reamer according to claim 1, wherein the composition of the diamond impregnated inserts comprises at least one metal and one metallic carbide selected from the group consisting of wolfram carbide, titanium carbide, tantalum carbide chromium carbide, vanadium carbide, niobium carbide and molybdenum carbide.
4. Stabilizer-reamer according to claim 3, wherein the diamond impregnated inserts comprise between 50% and 95% of the metallic carbide.
5. Stabilizer-reamer according to claim 1, wherein the diamond impregnated inserts are brazed on the stabilizer-reamer.
6. Stabilizer-reamer according to claim 5, wherein the diamond impregnated inserts are brazed at a temperature lower than 850 C.
7. Stabilizer-reamer according to claim 1, wherein it the stabilizer-reamer comprises a central cylindrical portion and two tapered portions on either side of said central cylindrical portion.
8. Stabilizer-reamer according to claim 7, wherein said central cylindrical portion comprises helical blades.
9. Stabilizer-reamer according to claim 8, wherein the leading and lateral edges of the helical blades comprise one row of cutting diamond impregnated inserts and the central part of the helical blades comprises wear resistant diamond impregnated inserts.
10. Stabilizer-reamer according to claim 8, wherein the stabilizer-reamer comprises, on its outer surface, cylindrical transition zones between the helical blades and the tapered parts, said cylindrical transition zones comprising between two rows and five rows of cutting diamond impregnated inserts.
11. Stabilizer-reamer according to claim 7, wherein the central cylindrical portion comprises the mixture of diamond impregnated inserts, the mixture comprising cutting diamond impregnated inserts and wear resistant diamond impregnated inserts.
12. Stabilizer-reamer according to claim 7, wherein said two tapered portions comprise cutting diamond impregnated inserts, the ratio of cutting inserts being above 50% of the total number of inserts in said mixture of diamond impregnated inserts.
13. Stabilizer-reamer according to claim 7, wherein said two tapered portions comprise, on their outer surface, diamond impregnated inserts having a shape, diameter and length adapted to form a tapered angle between 5 and 25.
14. Method for adjusting the stabilizing capabilities of the stabilizer-reamer according to claim 1, wherein a friction coefficient between the stabilizer-reamer and a borehole wall is modulated by varying the ratio of the cutting diamond impregnated inserts and the wear resistant diamond impregnated inserts in the mixture of diamond impregnated inserts, wherein the ratio is selected from a value between 0.02 and 0.8.
15. Stabilizer-reamer for a drilling string, wherein the stabilizer-reamer comprises on its outer surface a plurality of cutting diamond impregnated inserts, said cutting diamond impregnated inserts having a diamond grit size comprised between 18/20 and 40/50 mesh ASTM and a diamond concentration comprised between 10% and 35% in volume, and further comprising a central cylindrical portion and two tapered portions on either side of said central cylindrical portion, wherein the central cylindrical portion comprises a diamond laser cladding, the diamond concentration of said diamond laser cladding being comprised between 20 and 35% in volume, and the diamond grit size being comprised between 40/50 mesh ASTM and 120/140 mesh ASTM.
16. Stabilizer-reamer for a drilling string, wherein the stabilizer-reamer comprises on its outer surface a mixture of diamond impregnated inserts, the mixture comprising cutting diamond impregnated inserts having a diamond grit size comprised between 18/20 and 40/50 mesh ASTM and wear resistant diamond impregnated inserts having a diamond grit size comprised between 40/50 and 120/140 mesh ASTM, the stabilizer-reamer comprising a central cylindrical portion comprising helical blades and two tapered portions on either side of said central cylindrical portion, wherein the cutting diamond impregnated inserts are located on a leading and lateral edges of the helical blades and the wear resistant diamond impregnated inserts are located on the central part of the helical blades, and wherein the wear resistant diamond impregnated inserts have a smaller diamond grain size and higher diamond concentration than the cutting diamond impregnated inserts.
Description
SHORT DESCRIPTION OF THE DRAWINGS
(1) These and further aspects of the invention will be explained in greater detail by way of example and with reference to the accompanying drawings in which:
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(9) The figures are not drawn to scale. Generally, identical components are denoted by the same reference numerals in the figures.
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
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(11) All cutting diamond impregnated inserts have a diamond grit size comprised between 18/20 and 40/50 mesh ASTM and a diamond concentration comprised between 10% and 35% in volume, while wear resistant diamond impregnated inserts have a diamond grit size comprised between 40/50 and 120/140 mesh ASTM and a diamond concentration comprised between 35% and 60% in volume. The diameter of the diamond impregnated inserts is typically comprised between 6 and 25 mm and their height is typically comprised between 3 and 30 mm.
(12) Typical compositions for the matrix of the diamond impregnated inserts are the following:
(13) 1) wolfram carbide 50 to 94%
(14) Cobalt 50 to 6%
(15) 2) wolfram carbide 40 to 96%
(16) Cobalt 20 to 2%
(17) Nickel 30 to 4%
(18) 3) wolfram carbide 50 to 94%
(19) Nickel 50 to 6%
(20) 4) Wolfram carbide 40 to 60%
(21) Titanium carbide 10 to 50%
(22) Cobalt or Nickel 50 to 10%
(23) 5) Chromium carbide 50 to 94%
(24) Nickel 50 to 6%
(25) 6) Titanium carbide 20 to 40%
(26) Niobium carbide 3 to 10%
(27) Nickel 30 to 50%
(28) Molybdenum 10 to 20%
(29) Aluminium 10 to 20%
(30) A typical composition for the cutting inserts is the following:
(31) Wofram carbide/Nickel, with a weight ratio of 85/15% concentration of 25% in volume of diamond, grit size of diamond being 30/40 mesh ASTM.
(32) Typical compositions for the wear resistant inserts are the following:
(33) 1) Wolfram carbide/Cobalt with a weight ratio of 75/25%, concentration of 40% in volume of diamond, grit size of diamond being 40/50 mesh ASTM.
(34) 2) Wolfram carbide/Cobalt with a weight ratio of 50/50%, concentration of 60% in volume of diamond, grit size of diamond being 70/80 mesh ASTM.
(35) These three types of inserts can typically be present on a single stabilizer-reamer according to the invention. A stabilizer according to the invention comprises indeed at least one type of cutting inserts and one type of wear resistant inserts, but can also comprise more than two different types of inserts. It can for example comprise two types of wear resistant inserts with the aforementioned typical compositions.
(36) It is important to note that while the concentration of diamond is increased in the impregnated inserts, the ratio of carbide is advantageously decreased in to order to have a more resilient matrix. The ratio of carbide is consequently typically lower in wear diamond impregnated inserts than in cutting impregnated inserts.
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(43) It will be appreciated by persons skilled in the art that the present invention is not limited by what has been particularly shown and described hereinabove. The invention resides in each and every novel characteristic feature and each and every combination of characteristic features. Reference numerals in the claims do not limit their protective scope. Use of the verb to comprise and its conjugations does not exclude the presence of elements other than those stated. Use of the article a or an preceding an element does not exclude the presence of a plurality of such elements.
(44) The present invention has been described in terms of specific embodiments, which are illustrative of the invention and not to be construed as limiting.
(45) Summarized, the invention may be described as follows: