Expansion casing for plugging medium-high-pressure stratum and manufacturing method of expansion casing

An expansion casing, medium and high pressure technology, applied in the direction of manufacturing tools, earthwork drilling, mining fluids, etc., can solve the lack of anti-extrusion performance, no mention of the expansion pipe anti-external pressure collapse performance, strength and expandability Unable to meet the plugging requirements of high-pressure formations, etc., to achieve the effects of overcoming uneven deformation, uniform mechanical properties, and reducing manufacturing costs

Active Publication Date: 2019-02-15
HUNAN UNIV OF HUMANITIES SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Chinese patent CN104087834B adds Ca, Cu, Ce / La mixed rare earths to medium and low carbon steel, and adds one or more of Ni, Mo, Nb, V, Ti, and adopts HFW welding-weld seam online normalizing treatment-whole The method of quenching and tempering in the two-phase zone of the pipe, invented J55, N80 steel grade groove corrosion-resistant expansion pipe steel and welded expansion sleeve, but its strength and expandability cannot meet the plugging requirements of high-pressure formations
At the same time, on the one hand, the above three patents do not mention the external pressure collapse resistance of the expansion tube before and after expansion; secondly, the radial expansion rate is ≤10%; thirdly, the minimum yield strength of the P110 steel grade expansion tube in the API 5CT standard is 758MPa, This puts forward higher requirements for the operating pressure and operating equipment of oil field expansion construction
Pipe expansion and deformation is a kind of cold processing. The higher the yield strength, the greater the expansion pressure required for on-site expansion operations, and the higher the requirements for operating equipment. The purpose of this patent is to develop 95ksi steel grade expansion pipes, taking into account the on-site operation, to overcome the problem of insufficient anti-extrusion performance

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] The mass percentages of the chemical composition of steel for welded pipes in this example are: C: 0.14%, Si: 0.32%, Mn: 1.02%, Mo: 0.66%, Ni: 0.50, Nb: 0.08%, RE: 0.06%, S: 0.002% , P: 0.008%, B: 0.0008%, the balance is Fe and unavoidable impurities.

[0030] First, the molten steel after converter smelting and out-of-furnace refining is subjected to Ca treatment, and then continuously cast into slabs. The continuous casting slab is heated at 1100°C and then rolled into a strip. The final rolling temperature of the strip is 860°C. After rolling, the strip is cooled to 710°C and coiled into a coil.

[0031] Secondly, uncoiling, slitting, edge milling, forming, ERW welding and weld heat treatment are carried out. For seamed welded pipes, medium-frequency induction heating is used to conduct online normalizing heat treatment on the weld seam. The induction heating temperature is 700°C, and the heating time is 30s. Then, the inner and outer flashes of the weld are trimme...

Embodiment 2

[0038] The mass percentage of chemical composition of steel for welded pipe in this example is: C: 0.12%, Si: 0.27%, Mn: 0.96%, Mo: 0.6%, Ni: 0.43, Nb: 0.12%, RE: 0.08%, S: 0.002% , P: 0.008%, B: 0.0008%, the balance is Fe and unavoidable impurities.

[0039]First, the molten steel after converter smelting and out-of-furnace refining is subjected to Ca treatment, and then continuously cast into slabs. The continuous casting slab is heated at 1200°C and then rolled into a strip. The final rolling temperature of the strip is 870°C. After rolling, the strip is cooled to 680°C and coiled into a coil.

[0040] Secondly, uncoiling, slitting, edge milling, forming, ERW welding and weld heat treatment are carried out. For seamed welded pipes, medium-frequency induction heating is used to conduct online normalizing heat treatment on the weld seam. The induction heating temperature is 820°C and the heating time is 40s. Then the inner and outer flashes of the weld are trimmed. The sid...

Embodiment 3

[0047] The mass percent of the chemical composition of steel for welded pipes in this example is: C: 0.13%, Si: 0.28%, Mn: 1.15%, Mo: 0.59%, Ni: 0.39, Nb: 0.14%, RE: 0.092%, S: 0.005% , P: 0.010%, B: 0.0005%, and the balance is Fe and unavoidable impurities. First, the molten steel after converter smelting and out-of-furnace refining is subjected to Ca treatment, and then continuously cast into slabs. The continuous casting slab is heated at 1250°C and then rolled into a strip. The final rolling temperature of the strip is 880°C. After rolling, the strip is cooled to 650°C and coiled into a coil.

[0048] Secondly, uncoiling, slitting, edge milling, forming, ERW welding and weld heat treatment are carried out. For seamed welded pipes, medium-frequency induction heating is used to conduct online normalizing heat treatment on the weld seam. The induction heating temperature is 880°C and the heating time is 45s. Then the inner and outer flashes of the weld are trimmed. The sid...

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PUM

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Abstract

The invention discloses an expansion casing for plugging a medium-high-pressure stratum. The expansion casing comprises, by mass percentage, 0.08-0.18% of C, 0.18-0.38% of Si, 0.5-1.2% of Mn, 0.35-0.85% of Mo, 0.25-0.55% of Ni, 0.04-0.15% of Nb, 0.05-0.12% of RE, not larger than 0.005% of S, not larger than 0.010% of P, 0.0005-0.001% pf B and the balance Fe and inevitable impurities. The expansioncasing comprises the following preparation steps of coiled plate manufacturing, ERW pipe making, weld heat treatment, whole pipe heat treatment and stress relief treatment, nondestructive flaw detection and thread processing. After the expansion casing undergoes radial expansion deformation of not larger than 15%, the longitudinal ReL of the casing is in the range of 655-758 MPa, Rm is larger than 724 MPa, A is larger than 13%, and the external collapsing strength is larger than or equal to 32 MPa.

Description

technical field [0001] The invention relates to the technical field of metal materials, in particular to an expansion casing for medium and high pressure formation sealing and a manufacturing method thereof. Background technique [0002] The expansion pipe technology is to lower the pipe string into the well, and make the pipe string undergo permanent plastic deformation by mechanical or hydraulic methods, so as to enlarge the inner diameter of the wellbore or the production pipe string. This technology can increase the casing layer, simplify the wellbore structure, and save drilling costs. It is a more flexible completion method and a brand-new workover method, and it is also one of the most revolutionary technologies in oil field drilling and completion (Li Yiliang , Chen Qiang, Li Tao, Han Weiye, Bi Xiuling, Sun Qiang. New progress in the application of foreign expansion tube technology. Petroleum Machinery, 2013, 42(1): 24-27). Since 2001, domestic research on solid exp...

Claims

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Application Information

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IPC IPC(8): C22C38/02C22C38/04C22C38/12C22C38/08C22C38/32C21D9/50C21D9/08C21D1/18C21D1/28C21D1/30E21B43/10
CPCC21D1/18C21D1/28C21D1/30C21D9/08C21D9/50C22C38/005C22C38/02C22C38/04C22C38/08C22C38/12C22C38/32E21B43/103
Inventor 谭峰亮封举宁李鸿娟张海筹汪力
Owner HUNAN UNIV OF HUMANITIES SCI & TECH
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