EP4172455B1 - Thread clearance - Google Patents
Thread clearance Download PDFInfo
- Publication number
- EP4172455B1 EP4172455B1 EP21737073.3A EP21737073A EP4172455B1 EP 4172455 B1 EP4172455 B1 EP 4172455B1 EP 21737073 A EP21737073 A EP 21737073A EP 4172455 B1 EP4172455 B1 EP 4172455B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- female portion
- thread
- female
- length
- section
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B17/00—Drilling rods or pipes; Flexible drill strings; Kellies; Drill collars; Sucker rods; Cables; Casings; Tubings
- E21B17/02—Couplings; joints
- E21B17/04—Couplings; joints between rod or the like and bit or between rod and rod or the like
- E21B17/042—Threaded
- E21B17/0426—Threaded with a threaded cylindrical portion, e.g. for percussion rods
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B17/00—Drilling rods or pipes; Flexible drill strings; Kellies; Drill collars; Sucker rods; Cables; Casings; Tubings
- E21B17/02—Couplings; joints
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B17/00—Drilling rods or pipes; Flexible drill strings; Kellies; Drill collars; Sucker rods; Cables; Casings; Tubings
- E21B17/02—Couplings; joints
- E21B17/04—Couplings; joints between rod or the like and bit or between rod and rod or the like
- E21B17/042—Threaded
Definitions
- the present invention relates to a female portion to form part of a thread joint for a percussive drilling tool, especially for, although not exclusively for drill bits and drill rods.
- Percussion drilling is used to create a long borehole via a plurality of elongate drill string rods coupled together end-to-end by interconnected male and female threads.
- a drill bit may be connected to a single rod.
- the well-established technique breaks rock by hammering impacts transferred from the rock drill bit to the rock at the bottom of the borehole.
- the rock drill bit is mounted at one end of the drill string via a male thread on the endmost drill string rod to a female thread on the drill bit.
- the energy required to break the rock is generated by a hydraulically driven piston that contacts the end of the drill string (via a shank adaptor) to create a stress (or shock) wave that propagates through the drill string to a drill bit.
- Conventional threaded joints are described in US 4,332,502 ; US 4,398,756 ; US 4,687,368 , SE520077C2 and DE 2800887 .
- Threaded joints in the percussive drilling tool such as those between drill string rods and between the endmost drill string rod and the drill bit are subjected to bending forces during drilling from the stress waves that propagate the drill string. These bending moments fatigue the threaded joints and lead to breakage within the threaded portion of the joint. Eventually the stress will cause the threaded joint to get worn out and eventually fail.
- a female portion to form part of a thread joint for a percussive drilling tool comprising: a mounting sleeve having an axial end, wherein the mounting sleeve surrounds an internal cavity having an axial inner wall at the opposing end of the mounting sleeve compared to the axial end; wherein the mounting sleeve has at least one substantially cylindrical internally threaded section having a length L 1 , a thread entrance towards the axial end and a thread exit towards the axial inner wall; a thread clearance section positioned between the axial inner wall and the thread exit having a length L 2 and a diameter D 1 ; a guiding section positioned between the thread entrance and the axial end of the sleeve having a length, L 3 ; characterized in that: 0 mm ⁇ L 3 -L 2 ⁇ 12 mm. More preferably, 5
- this reduces the stress in the female portion of the threaded joint, meaning the risk of breakages in the female portion is decreased. Furthermore, if the stress in the female portion is increased then the diameter of the male threaded part can be increased which improves the performance of the percussive drilling tool.
- L 1 is between 25-56 mm, more preferably between 30-45 mm.
- the total length of the female thread (L1 + L2 + L3) is between 70 to 86 mm.
- this is the most optimal length of threaded section for increased performance.
- L 2 /L 1 > 0.01x D 1 .
- by increasing the ratio of the length of the thread clearance area compared to the length of the threaded section means that the stress in thread clearance area decreases.
- L 2 / L 1 > 26%, more preferably L 2 / L 1 > 32%.
- increasing the ratio of the length of the thread clearance area compared to the length of the threaded section means that the stress in thread clearance area decreases.
- L 2 / L 1 ⁇ 65%, more preferably ⁇ 50%.
- this provides sufficient length in the threaded section to achieve a secure threaded connection.
- L 2 / D 1 > 30%, more preferably L 1 / D 1 > 38%.
- increasing the ratio of the length of the thread clearance area compared to the diameter of the threaded section means that the stress in thread clearance area decreases. Therefore, the diameter of the thread clearance and female thread can be increased and consequently so can the diameter of the male part, which leads to increased performance of the male part and less risk of skirt failures in the female part.
- L 2 / D 1 ⁇ 65%, more preferably ⁇ 50%.
- this enables a secure threaded connection.
- the female portion is a drill bit. In an alternative embodiment, the female portion is a female end of a drill string rod.
- FIG 1 shows a percussive drilling tool 2 whereby a drill rod 4 is threadedly coupled to a drill bit 6 of conventional design.
- the percussive drilling tool 2 is especially used for top hammer drilling. Shockwaves generated by a surface piston (not shown) are translated through the mated surfaces from the drill rod 4 to the drill bit 6.
- the drill rod 4 comprises an axially extending main length section 8 that is terminated at one end by a male end 10 and at a second opposite end by a female end 12 having a longitudinal axis 14.
- the drill rod 4 is capable of being coupled end-to-end with other further drill rods to form a drill string (not shown) via another thread joint.
- Figure 2 shows that alternatively the drill bit 6 may be connected to a single drill rod 4 having two male ends 10.
- Figure 3 shows a cross section of the female end 12 of the drill rod 4 having a mounting sleeve 18 and an internal cavity 20, which is a hollow space, for receiving the male end 10 of the drill rod.
- Figure 4 shows a cross section of the drill bit 6 comprising an axially forwardmost drill head 16 of convention design for example comprising a rock crushing means, most typically this is a plurality of wear resistant cutting buttons projecting axially forward from the drill head (not shown); a mounting sleeve 18 that comprises an axially extending internal cavity 20 for receiving the male end 10 of the drill rod 4.
- the present invention relates to a special design for a female portion 22 that forms part of a thread joint for a percussive drilling tool 2.
- the female portion 22 could be either the female end 12 on the drill rod 4 or the drill bit 6.
- Figure 5 shows a cross section of an internal profile of the cavity 20 of the female portion 22, in other words figure 5 is an enlargement of the interior of figure 3 or figure 4 .
- the cavity 20 has an axial inner wall 24 for abutment with a male end 10 of a drill rod 4. Further, the cavity 20 has at least one substantially cylindrical internally threaded section 26 having a thread entrance 28 at the axially opposite end compared to the axial inner wall 24 and a thread exit 30 nearer to the axial inner wall 24.
- the threaded section 26 has a length, L 1 , which is defined as the length between the thread entrance 28 and the thread exit 30.
- the cavity 20 of the female portion 22 also has a thread clearance section 32 positioned between the axial inner wall 24 and the threaded section 26.
- the thread clearance section 32 is circumferential concave recess.
- the thread clearance section 32 has a length, L 2 , which is defined as the length between the thread exit 30 and the axial inner wall 24.
- the thread clearance section has a diameter, D 1 .
- the guiding section 50 has a length, L 3 , which is defined as the length between the thread entrance 28 and an axial end 52 of the sleeve 18.
- the guiding section 50 can either be a constant diameter across the whole of the guiding section 50 or it could optionally be stepped so that it has at least two different diameters.
- L 3 - L 2 for female portions 22 according to the present invention is ⁇ 12 mm, more preferably ⁇ 11.5 mm, even more preferably ⁇ 11 mm.
- L 3 - L 2 for female portions 22 according to the present invention is >0 mm, more preferably >5 mm, even more preferably >7 mm.
- L 1 is between 25-56 mm, more preferably between 30-45 mm.
- L 2 / L 1 > 26%, more preferably >32%.
- L 2 / L 1 ⁇ 65%, more preferably ⁇ 50%.
- L 2 / D 1 > 30%, more preferably >38%.
- L 2 / D 1 ⁇ 65%, more preferably ⁇ 50%.
- the female portion 22 is used for forming a thread joint 34 for a percussive drilling tool 2 wherein there is a bottom contact, as opposed to a shoulder contact, between female portion 22 and the male end 10 of the adjoining rod. In other words, there is contact between the axial inner wall 24 on the female portion and the male end 10 of the adjoining rod 4.
- Table 1 shows a summary of stress measurements for prior art and inventive female portions 22, it can clearly be seen that the stress in the region of the thread clearance is lower for the inventive samples.
- Example D 1 (mm) L 3 -L 2 (mm) Stress (MPa) in the region of the thread clearance on the female portion of a threaded joint. 1 (prior art) 33.1 12.7 305 2 (invention) 33.1 11.0 290 3 (prior art) 36.5 14.3 300 4 (invention) 36.5 10.5 275 Table 1: Summary of stress measurements
Landscapes
- Engineering & Computer Science (AREA)
- Geology (AREA)
- Life Sciences & Earth Sciences (AREA)
- Mining & Mineral Resources (AREA)
- Physics & Mathematics (AREA)
- Environmental & Geological Engineering (AREA)
- Fluid Mechanics (AREA)
- Mechanical Engineering (AREA)
- General Life Sciences & Earth Sciences (AREA)
- Geochemistry & Mineralogy (AREA)
- Earth Drilling (AREA)
- Percussive Tools And Related Accessories (AREA)
- Dowels (AREA)
- Materials For Medical Uses (AREA)
Description
- The present invention relates to a female portion to form part of a thread joint for a percussive drilling tool, especially for, although not exclusively for drill bits and drill rods.
- Percussion drilling is used to create a long borehole via a plurality of elongate drill string rods coupled together end-to-end by interconnected male and female threads. Alternatively, a drill bit may be connected to a single rod. The well-established technique breaks rock by hammering impacts transferred from the rock drill bit to the rock at the bottom of the borehole. The rock drill bit is mounted at one end of the drill string via a male thread on the endmost drill string rod to a female thread on the drill bit. Typically, the energy required to break the rock is generated by a hydraulically driven piston that contacts the end of the drill string (via a shank adaptor) to create a stress (or shock) wave that propagates through the drill string to a drill bit. Conventional threaded joints are described in
US 4,332,502 ;US 4,398,756 ;US 4,687,368 , andSE520077C2 DE 2800887 . - Threaded joints in the percussive drilling tool, such as those between drill string rods and between the endmost drill string rod and the drill bit are subjected to bending forces during drilling from the stress waves that propagate the drill string. These bending moments fatigue the threaded joints and lead to breakage within the threaded portion of the joint. Eventually the stress will cause the threaded joint to get worn out and eventually fail.
- Therefore, it is desirable to reduce the stress in the threaded joint to improve the performance of the percussive drilling tool and reduce the risk of the failure in the threaded joint. One solution to reducing stresses in the threaded joint is to increase the diameter of the male thread, however the problem with this is that it weakens the female part of the threaded joint meaning it is more likely to break. Consequently, the problem to be solved is how to decrease stress in the threaded joint to therefore increase their lifetime.
- It is an objective of this invention to provide a novel and improved design for threaded joints for percussive drilling tools. The objective is achieved by providing a female portion to form part of a thread joint for a percussive drilling tool comprising: a mounting sleeve having an axial end, wherein the mounting sleeve surrounds an internal cavity having an axial inner wall at the opposing end of the mounting sleeve compared to the axial end; wherein the mounting sleeve has at least one substantially cylindrical internally threaded section having a length L1, a thread entrance towards the axial end and a thread exit towards the axial inner wall; a thread clearance section positioned between the axial inner wall and the thread exit having a length L2 and a diameter D1; a guiding section positioned between the thread entrance and the axial end of the sleeve having a length, L3; characterized in that: 0 mm < L3-L2 < 12 mm. More preferably, 5 mm < L3-L2 <11.5 mm, even more preferably 7 mm< L3-L2 <11.1 mm.
- Advantageously, this reduces the stress in the female portion of the threaded joint, meaning the risk of breakages in the female portion is decreased. Furthermore, if the stress in the female portion is increased then the diameter of the male threaded part can be increased which improves the performance of the percussive drilling tool. L1 is between 25-56 mm, more preferably between 30-45 mm. The total length of the female thread (L1 + L2 + L3) is between 70 to 86 mm. Advantageously, this is the most optimal length of threaded section for increased performance.
- Preferably, L2/L1 > 0.01x D1. Advantageously, by increasing the ratio of the length of the thread clearance area compared to the length of the threaded section means that the stress in thread clearance area decreases.
- Preferably, L2 / L1 > 26%, more preferably L2 / L1 > 32%. Advantageously, increasing the ratio of the length of the thread clearance area compared to the length of the threaded section means that the stress in thread clearance area decreases.
- Preferably, L2 / L1 <65%, more preferably <50%. Advantageously, this provides sufficient length in the threaded section to achieve a secure threaded connection.
- Preferably, L2 / D1 > 30%, more preferably L1/ D1 > 38%. Advantageously, increasing the ratio of the length of the thread clearance area compared to the diameter of the threaded section means that the stress in thread clearance area decreases. Therefore, the diameter of the thread clearance and female thread can be increased and consequently so can the diameter of the male part, which leads to increased performance of the male part and less risk of skirt failures in the female part.
- Preferably, L2 / D1 < 65%, more preferably < 50%. Advantageously, this enables a secure threaded connection.
- In one embodiment, the female portion is a drill bit. In an alternative embodiment, the female portion is a female end of a drill string rod.
- A specific implementation of the present invention will now be described, by way of example only, and with reference to the accompanying drawings:
-
Figure 1 : Perspective view of a percussive drilling tool having one male and one female end. -
Figure 2 : Perspective view of a drill rod having two male ends. -
Figure 3 : Cross section of the female end of a drill rod. -
Figure 4 : Cross section of a drill bit. -
Figure 5 : Cross section of an internal profile of the cavity of the female portion to form part of a thread joint for a percussive drilling tool. -
Figure 1 shows apercussive drilling tool 2 whereby adrill rod 4 is threadedly coupled to adrill bit 6 of conventional design. Thepercussive drilling tool 2 is especially used for top hammer drilling. Shockwaves generated by a surface piston (not shown) are translated through the mated surfaces from thedrill rod 4 to thedrill bit 6. Thedrill rod 4 comprises an axially extendingmain length section 8 that is terminated at one end by amale end 10 and at a second opposite end by afemale end 12 having alongitudinal axis 14. Thedrill rod 4 is capable of being coupled end-to-end with other further drill rods to form a drill string (not shown) via another thread joint.Figure 2 shows that alternatively thedrill bit 6 may be connected to asingle drill rod 4 having twomale ends 10. -
Figure 3 shows a cross section of thefemale end 12 of thedrill rod 4 having amounting sleeve 18 and aninternal cavity 20, which is a hollow space, for receiving themale end 10 of the drill rod. -
Figure 4 shows a cross section of thedrill bit 6 comprising an axiallyforwardmost drill head 16 of convention design for example comprising a rock crushing means, most typically this is a plurality of wear resistant cutting buttons projecting axially forward from the drill head (not shown); amounting sleeve 18 that comprises an axially extendinginternal cavity 20 for receiving themale end 10 of thedrill rod 4. - The present invention relates to a special design for a
female portion 22 that forms part of a thread joint for apercussive drilling tool 2. Thefemale portion 22 could be either thefemale end 12 on thedrill rod 4 or thedrill bit 6. -
Figure 5 shows a cross section of an internal profile of thecavity 20 of thefemale portion 22, in other wordsfigure 5 is an enlargement of the interior offigure 3 orfigure 4 . Thecavity 20 has an axialinner wall 24 for abutment with amale end 10 of adrill rod 4. Further, thecavity 20 has at least one substantially cylindrical internally threadedsection 26 having athread entrance 28 at the axially opposite end compared to the axialinner wall 24 and athread exit 30 nearer to the axialinner wall 24. The threadedsection 26 has a length, L1, which is defined as the length between thethread entrance 28 and thethread exit 30. Thecavity 20 of thefemale portion 22 also has athread clearance section 32 positioned between the axialinner wall 24 and the threadedsection 26. Thethread clearance section 32 is circumferential concave recess. Thethread clearance section 32 has a length, L2, which is defined as the length between thethread exit 30 and the axialinner wall 24. The thread clearance section has a diameter, D1. There is a guidingsection 50 on the opposing end of the threadedsection 26 compared to thethread clearance section 32 for guiding themale end 10 of therod 4 into the correct position. The guidingsection 50 has a length, L3, which is defined as the length between thethread entrance 28 and anaxial end 52 of thesleeve 18. The guidingsection 50 can either be a constant diameter across the whole of the guidingsection 50 or it could optionally be stepped so that it has at least two different diameters. - Compared to conventional designs the ratio L2 compared to L1 and / or L3 has been increased.
- L3 - L2 for
female portions 22 according to the present invention is <12 mm, more preferably <11.5 mm, even more preferably <11 mm. L3 - L2 forfemale portions 22 according to the present invention is >0 mm, more preferably >5 mm, even more preferably >7 mm. L1 is between 25-56 mm, more preferably between 30-45 mm. - In one embodiment L2/L1>0.01x D1.
- In one embodiment L2 / L1 > 26%, more preferably >32%.
- In one embodiment L2 / L1 <65%, more preferably <50%.
- In one embodiment L2 / D1 > 30%, more preferably >38%.
- In one embodiment L2 / D1 < 65%, more preferably <50%.
- Preferably, the
female portion 22 is used for forming a thread joint 34 for apercussive drilling tool 2 wherein there is a bottom contact, as opposed to a shoulder contact, betweenfemale portion 22 and themale end 10 of the adjoining rod. In other words, there is contact between the axialinner wall 24 on the female portion and themale end 10 of the adjoiningrod 4. - Software simulation programming with bending force added to the
female portion 22 of inventive and non-inventive female portions was performed. Table 1 shows a summary of stress measurements for prior art and inventivefemale portions 22, it can clearly be seen that the stress in the region of the thread clearance is lower for the inventive samples.Example D1 (mm) L3-L2 (mm) Stress (MPa) in the region of the thread clearance on the female portion of a threaded joint. 1 (prior art) 33.1 12.7 305 2 (invention) 33.1 11.0 290 3 (prior art) 36.5 14.3 300 4 (invention) 36.5 10.5 275 Table 1: Summary of stress measurements
Claims (10)
- A female portion (22) to form part of a thread joint (34) for a bottom contact percussive drilling tool (2) comprising:a mounting sleeve (18) having an axial end (52), wherein the mounting sleeve (18) surrounds an internal cavity (20) having an axial inner wall (24) at the opposing end of the mounting sleeve (18) compared to the axial end (52);wherein the mounting sleeve (18) has at least one substantially cylindrical internally threaded section (26) having a length L1, a thread entrance (28) towards the axial end (52) and a thread exit (30) towards the axial inner wall (24);a thread clearance section (32) positioned between the axial inner wall (24) and the thread exit (30) having a length L2 and a diameter D1;a guiding section (50) positioned between the thread entrance (28) and the axial end (52) of the sleeve (18) having a length, L3;wherein L1 is between 25-56 mm and the total length of L1 + L2 + L3 is between 70 to 86 mm;
- The female portion (22) according to claim 1, wherein L2/L1>0.01x D1.
- The female portion (22) according to any of the previous claims, wherein L2 / L1 > 26%.
- The female portion (22) according to any of the previous claims, wherein L2 / L1 <65%.
- The female portion (22) according to any of the previous claims, wherein L2 / D1 > 30%.
- The female portion (22) according to any of the previous claims, wherein L2 / D1 < 65%.
- The female portion (22) according to any of the previous claims wherein the female portion (22) is part of a drill bit (6).
- The female portion (22) according to any of the previous claims wherein the female portion (22) is a female end (12) of a drill string rod (4).
- A drill string rod comprising a female portion (22) according to any of claims 1-7.
- A drill bit comprising a female portion (22) according to any of claims 1-7.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP24219918.0A EP4512990A3 (en) | 2020-06-30 | 2021-06-29 | Thread clearance |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP20183128.6A EP3933165A1 (en) | 2020-06-30 | 2020-06-30 | Thread clearance |
| PCT/EP2021/067808 WO2022002911A1 (en) | 2020-06-30 | 2021-06-29 | Thread clearance |
Related Child Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP24219918.0A Division EP4512990A3 (en) | 2020-06-30 | 2021-06-29 | Thread clearance |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP4172455A1 EP4172455A1 (en) | 2023-05-03 |
| EP4172455C0 EP4172455C0 (en) | 2024-12-25 |
| EP4172455B1 true EP4172455B1 (en) | 2024-12-25 |
Family
ID=71409170
Family Applications (3)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP20183128.6A Withdrawn EP3933165A1 (en) | 2020-06-30 | 2020-06-30 | Thread clearance |
| EP24219918.0A Pending EP4512990A3 (en) | 2020-06-30 | 2021-06-29 | Thread clearance |
| EP21737073.3A Active EP4172455B1 (en) | 2020-06-30 | 2021-06-29 | Thread clearance |
Family Applications Before (2)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP20183128.6A Withdrawn EP3933165A1 (en) | 2020-06-30 | 2020-06-30 | Thread clearance |
| EP24219918.0A Pending EP4512990A3 (en) | 2020-06-30 | 2021-06-29 | Thread clearance |
Country Status (14)
| Country | Link |
|---|---|
| US (1) | US20230272678A1 (en) |
| EP (3) | EP3933165A1 (en) |
| JP (1) | JP7733683B2 (en) |
| KR (1) | KR20230028299A (en) |
| CN (1) | CN115698463A (en) |
| AU (1) | AU2021298830A1 (en) |
| BR (1) | BR112022026893A2 (en) |
| CA (1) | CA3179275A1 (en) |
| CL (1) | CL2022003779A1 (en) |
| MX (1) | MX2022016467A (en) |
| PE (1) | PE20230563A1 (en) |
| PL (1) | PL4172455T3 (en) |
| WO (1) | WO2022002911A1 (en) |
| ZA (1) | ZA202212574B (en) |
Family Cites Families (24)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3537738A (en) * | 1968-04-15 | 1970-11-03 | Sandvikens Jernverks Ab | Drill rod for long hole drilling in the ground |
| US4332502A (en) | 1977-01-11 | 1982-06-01 | Padley & Venables Limited | Apparatus for use in drilling |
| US4398756A (en) | 1980-09-15 | 1983-08-16 | Vallourec, S. A. | Cylindro-conical pipe joint |
| SE459681B (en) * | 1985-01-07 | 1989-07-24 | Santrade Ltd | DRILLING ELEMENT BEFORE SHOCK DRILLING |
| SE469602B (en) | 1985-04-04 | 1993-08-02 | Sandvik Ab | CUTTING HEAD BEFORE SHOCK DRILLING |
| SE469603B (en) * | 1988-07-08 | 1993-08-02 | Sandvik Ab | GAENGFOERBAND |
| SE505073C2 (en) * | 1994-07-19 | 1997-06-23 | Sandvik Ab | Threaded joints for striking drilling |
| SE516874C2 (en) * | 1999-11-26 | 2002-03-19 | Sandvik Ab | Threaded joint for striking drilling and trade included in the threaded joint |
| SE516651C2 (en) * | 1999-11-26 | 2002-02-05 | Sandvik Ab | Threaded joints for striking drilling, a trade and a female part |
| SE0000701L (en) * | 2000-03-02 | 2001-06-25 | Sandvik Ab | Threaded joints and rock drill elements for striking drilling |
| SE522221C2 (en) * | 2001-10-12 | 2004-01-27 | Sandvik Ab | Striking rock drill joints |
| SE0201989L (en) * | 2002-06-27 | 2003-05-20 | Sandvik Ab | Trade, drill bit and threaded joint for striking rock drilling |
| US7210710B2 (en) * | 2004-03-01 | 2007-05-01 | Omsco, Inc. | Drill stem connection |
| JP4954542B2 (en) * | 2005-12-09 | 2012-06-20 | 三菱マテリアル株式会社 | Drilling rod, drilling bit and drilling tool |
| WO2007133150A1 (en) * | 2006-05-17 | 2007-11-22 | Sandvik Intellectual Property Ab | A top hammer rock-drilling tool, a drill rod and coupling sleeve |
| SE531459C2 (en) * | 2006-05-17 | 2009-04-14 | Sandvik Intellectual Property | Hondel and the procedure for the manufacture of female parts |
| US9885214B2 (en) * | 2009-07-14 | 2018-02-06 | Ptech Drilling Tubulars, Llc | Threaded tool joint connection |
| EP2383420B1 (en) * | 2010-04-29 | 2012-06-20 | Sandvik Intellectual Property AB | Drill bit for percussive rock drilling |
| US9239122B2 (en) * | 2012-05-22 | 2016-01-19 | Single Buoy Moorings, Inc. | Pipe connection |
| US9643262B2 (en) * | 2013-07-25 | 2017-05-09 | Kennametal Inc. | Coupling mechanism for cutting tool |
| PL2845992T3 (en) * | 2013-09-09 | 2016-07-29 | Sandvik Intellectual Property | Drill string with bend resistant coupling |
| EP3095955A1 (en) * | 2015-05-22 | 2016-11-23 | Sandvik Intellectual Property AB | Threaded coupling end for drill string component |
| EP3095954B1 (en) * | 2015-05-22 | 2024-05-15 | Sandvik Intellectual Property AB | Drill rod or adaptor with strengthened spigot coupling |
| US10612701B2 (en) * | 2017-03-13 | 2020-04-07 | Rotary Connections International Ltd. | Premium threaded connection and method for making same |
-
2020
- 2020-06-30 EP EP20183128.6A patent/EP3933165A1/en not_active Withdrawn
-
2021
- 2021-06-29 MX MX2022016467A patent/MX2022016467A/en unknown
- 2021-06-29 BR BR112022026893A patent/BR112022026893A2/en unknown
- 2021-06-29 JP JP2022580423A patent/JP7733683B2/en active Active
- 2021-06-29 AU AU2021298830A patent/AU2021298830A1/en active Pending
- 2021-06-29 WO PCT/EP2021/067808 patent/WO2022002911A1/en not_active Ceased
- 2021-06-29 PL PL21737073.3T patent/PL4172455T3/en unknown
- 2021-06-29 US US18/013,215 patent/US20230272678A1/en active Pending
- 2021-06-29 PE PE2022002973A patent/PE20230563A1/en unknown
- 2021-06-29 CN CN202180040928.0A patent/CN115698463A/en active Pending
- 2021-06-29 CA CA3179275A patent/CA3179275A1/en active Pending
- 2021-06-29 EP EP24219918.0A patent/EP4512990A3/en active Pending
- 2021-06-29 KR KR1020227045169A patent/KR20230028299A/en active Pending
- 2021-06-29 EP EP21737073.3A patent/EP4172455B1/en active Active
-
2022
- 2022-11-17 ZA ZA2022/12574A patent/ZA202212574B/en unknown
- 2022-12-27 CL CL2022003779A patent/CL2022003779A1/en unknown
Also Published As
| Publication number | Publication date |
|---|---|
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| JP2023531271A (en) | 2023-07-21 |
| EP4512990A2 (en) | 2025-02-26 |
| US20230272678A1 (en) | 2023-08-31 |
| EP4172455C0 (en) | 2024-12-25 |
| CA3179275A1 (en) | 2022-01-06 |
| JP7733683B2 (en) | 2025-09-03 |
| MX2022016467A (en) | 2023-02-01 |
| AU2021298830A1 (en) | 2023-02-02 |
| CN115698463A (en) | 2023-02-03 |
| ZA202212574B (en) | 2025-06-25 |
| CL2022003779A1 (en) | 2023-05-19 |
| KR20230028299A (en) | 2023-02-28 |
| WO2022002911A1 (en) | 2022-01-06 |
| BR112022026893A2 (en) | 2023-01-24 |
| PE20230563A1 (en) | 2023-04-04 |
| EP3933165A1 (en) | 2022-01-05 |
| PL4172455T3 (en) | 2025-03-03 |
| EP4172455A1 (en) | 2023-05-03 |
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