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US20100193085A1 - Seamless steel pipe for use as vertical work-over sections - Google Patents

Seamless steel pipe for use as vertical work-over sections
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Publication number
US20100193085A1
US20100193085A1US12/595,167US59516708AUS2010193085A1US 20100193085 A1US20100193085 A1US 20100193085A1US 59516708 AUS59516708 AUS 59516708AUS 2010193085 A1US2010193085 A1US 2010193085A1
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United States
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max
tube
seamless steel
steel tube
work
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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.)
Abandoned
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US12/595,167
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Alfonso Izquierdo Garcia
Héctor Manuel Quintanilla Carmona
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Tubos de Acero de Mexico SA
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Tubos de Acero de Mexico SA
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Assigned to TUBOS DE ACERO DE MEXICO, S.A.reassignmentTUBOS DE ACERO DE MEXICO, S.A.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: IZQUIERDO GARCIA, ALFONZO, QUINTANILLA CARMONA, HECTOR MANUEL
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Abstract

The present invention describes a seamless steel tube for work-over risers comprising in weight percent, carbon 0.23-0.29, manganese 0.45-0.65, silicon 0.15-0.35, chromium 0.90-1.20, molybdenum 0.70-0.90, nickel 0.20 max, nitrogen 0.010 max, boron 0.0010-0.0030, aluminum 0.010-0.045, sulfur 0.005 max, phosphorus 0.015 max, titanium 0.005-0.030, niobium 0.020-0.035, copper 0.15 max, arsenic 0.020 max, calcium 0.0040 max, tin 0.020 max, hydrogen 2.4 ppm max, the rest are iron and inevitable impurities, consisting of a geometry in which ends of the tube have an increased wall thickness and outer diameter and having a yield strength of at least of 620 MPa (90 ksi) throughout the whole length of a tube body and in tube ends. The present invention also describes methods for manufacturing a seamless steel tube for work-over risers having a yield strength at least of 620 MPa (90 ksi) both in a tube body and in tube ends.

Description

Claims (19)

2. A seamless steel tube for work-over risers according toclaim 1 further comprising the following mechanical properties in the as-quench condition including 90% of martensitic transformation when evaluated according to the following formulae: HRCmin=(58×% C)+27, austenitic grain size as per ASTM minimum 5 or finer in the as-quench and temper condition, longitudinal Tensile Test (round standard specimens when wall thickness equal or above 1″ and longitudinal strip specimens when wall thickness below 1″), at least Yield Strength of 620 MPa (90 ksi), Maximum Yield Strength of 724 MPa (105 ksi), Minimum Ultimate Tensile Strength, 690 MPa (100 ksi), Minimum Elongation (L=4D), 18%, Yield to Tensile Ratio≦0.92, Transverse Charpy Test, Minimum individual Absorbed Energy: 30 Joules, Minimum Average Absorbed Energy: 40 Joules, Maximum Hardness value, 25.4 HRC (value as per API 5CT means average per row), Microcleanliness acceptance criteria as per ASTM E-45 A: A, B, C, D all below 2, Passing SSC Method A test as per NACE TM0177-2005, using test solution (A), testing at 85% SMYS, test period 720 hours, throughout the whole length of a tube body and in tube ends.
3. A seamless steel tube for work-over risers according toclaim 1 further comprising the following mechanical properties in the as-quench condition including at least 90% of martensitic transformation when evaluated according to the following formulae: HRCmin=(58×% C)+27, austenitic grain size as per ASTM minimum 5 or finer in the as-quench and temper condition, longitudinal Tensile Test (round standard specimens when wall thickness equal or above 1″ and longitudinal strip specimens when wall thickness below 1″), at least a Yield Strength of 620 MPa (90 ksi), a Maximum Yield Strength of 724 MPa (105 ksi), a Minimum Ultimate Tensile Strength, 690 MPa (100 ksi), a Minimum Elongation (L=4D), 18%, Yield to Tensile Ratio≦0.92, Transverse Charpy Test, Minimum individual Absorbed Energy: 30 Joules, Minimum Average Absorbed Energy: 40 Joules, Maximum Hardness value, 25.4 HRC (value as per API 5CT means average per row), Microcleanliness acceptance criteria as per ASTM E-45 A: A, B, C, D all below 2, Passing SSC Method A test as per NACE TM0177-2005, using test solution (A), testing at 85% SMYS, test period 720 hours, throughout the whole length of a tube body and in tube ends.
4. A method for manufacturing a seamless steel tube for work-over risers having a yield strength at least of 620 MPa (90 ksi) both in a tube body and in tube ends comprising the following steps of:
(a) providing a steel tube comprising a composition in weight percent, carbon 0.23-0.29, manganese 0.45-0.65, silicon 0.15-0.35, chromium 0.90-1.20, molybdenum 0.70-0.90, nickel 0.20 max, nitrogen 0.010 max, boron 0.0010-0.0030, aluminum 0.010-0.045, sulfur 0.005 max, phosphorus 0.015 max, titanium 0.005-0.030, niobium 0.020-0.035, copper 0.15 max, arsenic 0.020 max, calcium 0.0040 max, tin 0.020 max, hydrogen 2.4 ppm max, the rest are iron and inevitable impurities;
(b) upsetting of tube ends;
(c) austenitizing between 850-930° C. the full length of the tube; and
(d) quenching and tempering between 630-720° C.
5. A method for manufacturing a seamless steel tube for work-over risers according toclaim 4 further comprising the following steps:
(e) destructive testing including microcleanliness, austenitic grain size, calculate % of martensitic transformation, tensile, hardness, toughness, sulfide stress cracking (SSC) testing;
(f) dimensional controlling of pipe body and upset ends including one or more of outside diameter, out of roundness, eccentricity, straightness, internal diameter, and length;
(g) machining of external and internal upset end;
(h) dimensional controlling of one or more of internal diameter, outside diameter and machined end;
(i) drift testing at the upset ends; and
(j) non-destructive testing of upset ends, weighing, measuring and marking, external surface visual inspection, ultrasonic (UT) inspection of pipe body and UT inspection of upset ends.
6. A method for manufacturing a seamless steel tube for work-over risers having a yield strength at least of 620 MPa (90 ksi) both in a tube body and in tube ends comprising the following steps of:
(a) providing a steel tube comprising a composition in weight percent, carbon 0.23-0.29, manganese 0.45-0.65, silicon 0.15-0.35, chromium 0.90-1.20, molybdenum 0.70-0.90, nickel 0.20 max, nitrogen 0.010 max, boron 0.0010-0.0030, aluminum 0.010-0.045, sulfur 0.005 max, phosphorus 0.015 max, titanium 0.005-0.030, niobium 0.020-0.035, copper 0.15 max, arsenic 0.020, calcium 0.0040 max, tin 0.020 max, hydrogen 2.4 ppm max, the rest are iron and inevitable impurities, obtained by rolling process (MPM process);
(b) heat treating the tube comprising austenitizing between 850-930° C. the full length of the tube, and quenching and tempering between 630-720° C.;
(c) destructive testing including microcleanliness, austenitic grain size, calculate % of martensitic transformation, tensile, hardness, toughness, sulfide stress cracking (SSC) testing;
(d) dimensional controlling of pipe body including one or more of outer diameter (OD), out of roundness, straightness, inner diameter (ID), and length; and
(e) machining from external surface the complete length of the pipe by programming CNC lath machine in order to achieve final dimensions at the ends.
US12/595,1672007-04-172008-04-17Seamless steel pipe for use as vertical work-over sectionsAbandonedUS20100193085A1 (en)

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
MXMX/A/2007/0046002007-04-17
MX2007004600AMX2007004600A (en)2007-04-172007-04-17Seamless steel pipe for use as vertical work-over sections.
PCT/MX2008/000054WO2008127084A2 (en)2007-04-172008-04-17A seamless steel tube for work-over riser and method of manufacturing

Publications (1)

Publication NumberPublication Date
US20100193085A1true US20100193085A1 (en)2010-08-05

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US12/595,167AbandonedUS20100193085A1 (en)2007-04-172008-04-17Seamless steel pipe for use as vertical work-over sections

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US (1)US20100193085A1 (en)
EP (1)EP2143817A2 (en)
AR (1)AR066080A1 (en)
BR (1)BRPI0810005A2 (en)
CA (1)CA2682959A1 (en)
MX (1)MX2007004600A (en)
NO (1)NO20093069L (en)
WO (1)WO2008127084A2 (en)

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US20100294401A1 (en)*2007-11-192010-11-25Tenaris Connections LimitedHigh strength bainitic steel for octg applications
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AR066080A1 (en)2009-07-22
BRPI0810005A2 (en)2015-10-27
WO2008127084A4 (en)2009-03-19
CA2682959A1 (en)2008-10-23
WO2008127084A3 (en)2008-12-31
NO20093069L (en)2009-12-30
EP2143817A2 (en)2010-01-13
WO2008127084A2 (en)2008-10-23
MX2007004600A (en)2008-12-01

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