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OERLIKON là nhà sản xuất vật liệu hàn uy tín hàng đầu thế giới thuộc tập đoàn LINCOLN ELECTRIC

OERLIKON có dải sản phẩm rất rộng, ứng dụng cho nhiều ngành công nghiệp:

- Que hàn thuốc bọc https://www.oerlikon-welding.com/coated-electrodes bao gồm các dòng que hàn thép không hợp kim, que hàn hợp kim thấp và trung bình, que hàn hợp kim cao và các loại que hàn khác

- Dây hàn MIG/MAG https://www.oerlikon-welding.com/mig-mag-solid-wires bao gồm các dòng dây hàn thép không hợp kim, dây hàn hợp kim thấp và trung bình, dây hàn hợp kim cao và các loại dây hàn MIG/MAG khác

- Que hàn TIG https://www.oerlikon-welding.com/tig-rods bao gồm các dòng que hàn thép không hợp kim, que hàn hợp kim thấp và trung bình, que hàn hợp kim cao và các loại que hàn khác.

- Dây hàn lõi thuốc https://www.oerlikon-welding.com/flux-cored-wires bao gồm các dòng dây hàn thép không hợp kim, dây hàn lõi thuốc hợp kim thấp và trung bình, dây hàn lõi thuốc hợp kim cao.

Các sản phẩm vật liệu hàn của OERLIKON đặc biệt có thế mạnh trong ngành chế tạo dàn khoan dầu, các công trình xa bờ, các kết cấu, thiết bị trong nhà máy nhiệt điện, điện hạt nhân, các nhà máy lọc hóa dầu,v.v...

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   VẬT LIỆU HÀN HỢP KIM ỨNG DỤNG TRONG CÔNG NGHIỆP HÓA DẦU

    

(Xin lỗi, chúng tôi đang trong quá trình chuyển ngữ sang tiếng Việt,... )
In the petrochemical industry, the increased temperature and hydrogen pressure under operating conditions requires new steels and welding consumables to satisfy more rigid specifications: mechanical property requirements following complex heat treatment Cycles.

OERLIKON OE CROMO S225V is a 2 ¼Cr1Mo¼ V solid submerged arc welding wire with controlled very low levels of impurity and residual elements.

OERLIKON OP CROMO F537 is an agglomerated fluoride basic submerged arc welding flux specially designed for welding heat resistant steels. This flux has a very low hydrogen potential and exceptionally low silicon pick up and a neutral behaviour in terms of Manganese.

OERLIKON CROMO E225V is a basic coated 2.25%Cr1%MoV electrode suitable for welding creep resistant steels. Core wire alloyed electrode. The weld metal chemistry is very low in tramp/impurity elements allowing to respect the X factor <12 ppm) and J factor < 120 ppm) and showing excellent resistance to the step cooling test, not susceptible to in-service embrittlement. Crack resistant with excellent tensile strength at high temperature and good creep rupture strength. Very low diffusible hydrogen (HD<4ml/100g). The CROMO E225V offers excellent operability in butt and fillet joint. All position welding (no downhill), the 3.2 and 4 mm diameter electrodes are suitable for positional welding (uphill). Stable arc with excellent bead shape. Suitable for use with either DC positive and with AC.


VẬT LIỆU HÀN HỢP KIM CHỊU DÃO NHIỆT ỨNG DỤNG TRONG NHÀ MÁY NHIỆT ĐIỆN

Solutions for P91 and P92 creep resistance applications

Material developments such as creep advanced 9%Cr resisting steels for high temperature and high pressure components, still play a big role in the new projects in the field of the super-critical and Ultra-supercritical steam parameters applications.
The T/P91 (9%CrMo) materials are now well recognized and in use worldwide. A specific focus have been engaged some years ago to more advanced grades such as T/P92 and this steel has already been welded in some projects in Europe, USA, Japan and China.
Even though these T/P92 materials are used at high temperature, where toughness is not a matter of concern, it is important that the welded joints show also a good toughness at room temperature, for fabrication and construction steps and for start-up and shut down considerations.

CROMOCORD 9M : basic synthetic electrode classified AWS A5.5: E 9018-B91 H4 type 9Cr1MoV-Nb-N for creep resistant steels ASTM T/P 91, forgings and thick-walled cast steel (G-X12CrMoVNb9-1). Nickel free weld metal to improve Rm at high temperature. Suits perfectly the piping works, as well as the casting repairs (steam valves, steam turbine casings).

CROMOCORD 10M: Basic electrode classified A5.5: ~ E 9018-G H4. Welding of ASTM steel plates, pipes and forgings assembly, cast valve casing, cast Steam turbine casing for assemblies and repairs. For base materials such as GX 12 CrMoWVNbN 10 1 1 or similar.

CROMOCORD 91 : Basic synthetic electrode classified A5.5: E 9018-B91 H4. 9Cr1MoV-Nb-N for creep resistant steels T/P 91. (Ni+Mn) restriction to increase the Ac1 temperature in order to avoid harmful microstructure transformation during industrial PWHT.

CROMOCORD 92: Basic synthetic electrode E9018-G H4 9Cr1/2Mo W-Co-V-Nb-N for creep resistant steels T/P 92: X10CrMoWVNb9-2. Very low impurities level, outstanding innovative alloying regime utilising 1%Co (achieving better microstructure after PWHT, improving creep resistance properties).

CROMO E91 : E9015-B91 H4 matching core wire basic coated electrode 9Cr 1Mo VNbN electrode for welding of T/P 91 materials. Weld chemistry very low in tramp/impurity elements. (Ni+Mn) restriction following the most demanding guidelines, for a better Ac1 temperature achievement after industrial PWHT.

CROMO E92: E9015-B92 H4 matching core wire basic coated electrode 9Cr 1/2Mo 1.5W VNbN electrode for welding of T/P 92 materials. Fine tuning of the chemistry for better Rm at high temperature. Excellent tensile strength in creep regime.

Submerged arc combination OP90W and OE-S1CrMo 91:
Classified AWS A5.23 F9PZ-EB91-B91. Specially designed for high creep resistant alloys such as T/P91 materials. The OE-S1CrMo91 wire offers a very high purity of the weld metal, and the high basicity of the flux provides a maximum resistance to hot cracking at high interpass temperatures. High charpy toughness is combined with good creep properties. Flux from DRYBAG can be used without redrying (300°C-350°C). (Ni+Mn) restriction following the most demanding guidelines, for a better Ac1 temperature achievement after industrial PWHT.

Submerged arc combination OP9W and OE-S1CrMo 92:
Classified AWS A5.23 F9PZ-EG-G. Specially designed for high creep resistant alloys such as T/P92 materials. The OE-S1CrMo92 wire offers a very high purity of the weld metal, and the high basicity of the flux provides a maximum resistance to hot cracking at high interpass temperatures. High charpy toughness is combined with good creep properties. Flux from DRYBAG can be used without redrying (300°C-350°C).


VẬT LIỆU HÀN HỢP KIM ỨNG DỤNG TRONG NHÀ MÁY ĐIỆN HẠT NHÂN

Shielded Metal Arc Welding (SMAW) and Submerged Arc Welding (SAW) are the two main processes used for the fabrication of  nuclear reactors. The nuclear industry requires MMA electrodes for 304L austenitic Stainless steel welding, cladding (AWS E308L-16, 309L-16 titania type) with extreme all weld metal mechanical properties and ultralow impurities levels.

BASINOX E308-L 16 NUC, BASINOX E309L-16 NUC:

  • Manual Basinox E308L & E309L-16 NUC are still unparalleled in the trade-off between flexibility and weldment integrity .
  • Rutile slag system favoured in recent times for excellent operational behaviour.
  • Ability to retain good mechanical properties as-welded and after ultra long PWHT (>40 hrs. @615°C).
  • Aimed AWM delta-ferrite very tightly controlled.

Basic agglomerated flux OP41 TT:
Fluoro-basic flux which is particularly suitable for welding components such as pressure vessels. Used in nuclear in combination with different wire electrodes chemistries for many applications such as reactor pressure vessels, steam generators, pressurizers, reactor safety tanks and pipes in the primary and secondary circuits as well as the auxiliary units.

Moisture mick-up of the flux and diffusible hydrogen content in the weld metal remain at very low levels.

Fluxes for Weld Overlay applications

For nuclear applications, the AST 300 NUC flux is combined with austenitic strips such as SUPRASTRIP 19 9L (EQ308L) and 24 13L (EQ309L). The AST 300 NUC flux has a specific composition which enhances the weld bead, and slag residues have self-releasing. Only one kind of flux AST 300 NUC can suit perfectly the nuclear applications, whatever the grade of strip is (EQ308L or EQ309L) and can meet the most demanding designs called for PWHT carried out at 610°C for 40 hrs, to stress relief properly the heavier walled components.

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