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Title: Integrity of internally coated premium connections

Conference ·
OSTI ID:70071
 [1];  [2];  [3];  [4];  [5]
  1. Kawasaki Steel Corp., Aichi (Japan)
  2. Japan National Oil Corp, Chiba (Japan)
  3. Japan Research and Development Center for Metals, Tokyo (Japan)
  4. Sumitomo Metal Technology Inc., Hyougo (Japan)
  5. Nippon Steel Corp., Kitakyushu (Japan)

A research project was established for developing highly corrosion-resistant oil country tubular goods with thin layers on their inside surfaces. This report studied the integrity of internally coated joints as a premium connection, which was verified by anti-galling, sealability, and full scale SSC tests. Pin was coated with Plasma Transferred arc hardfacing (PTH), Ion plating, Plasma CVD, or Planer magnetron sputtering process (PMSP), while coupling was done with PTH, or Cylindrical magnetron sputtering process (CMSP). Coating material was TiN (titanium nitride) or UNS N10276. Anti-galling properties were studied by twenty-time Makeup/Breakout tests. Sealability was studied with a dedicated thermal-cycle-tester under thermal-cycling with internal pressure and tension, and static combined loads of internal pressure, tension, and bending. Full scale SSC test was carried out under the condition of 200 C-1.1 MPa H{sub 2}S-1.5MPa CO{sub 2}-20%NaCl. Final selected coatings were as follows. Coating material was UNS N10276. The processes for pin were PTH for inside surface, and PMSP for threads, respectively; those for coupling were PTH for inside surface and CMSP for threads. No galling, no leak, and no corrosion attack were observed in the established connection.

OSTI ID:
70071
Report Number(s):
CONF-940222-; TRN: IM9529%%410
Resource Relation:
Conference: Corrosion 94: National Association of Corrosion Engineers (NACE) international annual conference, Baltimore, MD (United States), 28 Feb - 4 Mar 1994; Other Information: PBD: 1994; Related Information: Is Part Of Corrosion/94 conference papers; PB: 5005 p.
Country of Publication:
United States
Language:
English