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Seamless Nickel Alloy Tube Astm B335 Hastelloy B2 Uns N10665 Abrasive Resistance

    Buy cheap Seamless Nickel Alloy Tube Astm B335 Hastelloy B2 Uns N10665 Abrasive Resistance from wholesalers
     
    Buy cheap Seamless Nickel Alloy Tube Astm B335 Hastelloy B2 Uns N10665 Abrasive Resistance from wholesalers
    • Buy cheap Seamless Nickel Alloy Tube Astm B335 Hastelloy B2 Uns N10665 Abrasive Resistance from wholesalers
    • Buy cheap Seamless Nickel Alloy Tube Astm B335 Hastelloy B2 Uns N10665 Abrasive Resistance from wholesalers
    • Buy cheap Seamless Nickel Alloy Tube Astm B335 Hastelloy B2 Uns N10665 Abrasive Resistance from wholesalers
    • Buy cheap Seamless Nickel Alloy Tube Astm B335 Hastelloy B2 Uns N10665 Abrasive Resistance from wholesalers

    Seamless Nickel Alloy Tube Astm B335 Hastelloy B2 Uns N10665 Abrasive Resistance

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    Brand Name : SPEZILLA
    Model Number : Hastelloy B2 UNS N10665
    Certification : ISO9001:2008
    Price : Negotiation
    Payment Terms : T/T, L/C
    Supply Ability : 100 TONS / MONTH
    Delivery Time : 60 DAYS
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    Seamless Nickel Alloy Tube Astm B335 Hastelloy B2 Uns N10665 Abrasive Resistance

    ASTM B335 Hastelloy B2 UNS N10665 NICKEL ALLOY SEAMLESS TUBING


    Overview

    Hastelloy B2 is a nickel-molybdenum alloy with significant resistance to reducing environments, such as hydrogen chloride gas and sulfuric, acetic and phosphoric acids. Hastelloy B2 provides resistance to pure sulfuric acid and a number of non-oxidizing acids. The alloy should not be used in oxidizing media or where oxidizing contaminants are available in reducing media. Premature failure may occur if alloy B2 is used where iron or copper is present in a system containing hydrochloric acid.

    Industry users like the resistance to a wide range of organic acids and the resistance to chloride-induced stress-corrosion cracking.

    Hastelloy B2 resists the formation of grain boundary carbide precipitates in the weld heat-affected zone, making it suitable for most chemical process applications in the as-welded condition. The heat-affected weld zones have reduced precipitation of carbides and other phases to ensure uniform corrosion resistance.
    Alloy B2 also has excellent resistance to pitting and stress corrosion cracking.


    Applications

    Superior resistance to hydrochloric acid, aluminum chloride catalysts and other strongly reducing chemicals. Excellent high-temperature strength in inert and vacuum atmospheres.

    Hastelloy B2 is a nickel-molybdenum alloy particularly suited for equipment handling reducing chemical environments .

    Applications in the chemical process industry involving sulfuric, phosphoric, hydrochloric and acetic acid. Temperature uses vary from ambient temperature to 1500°F depending on the environments (please call for technical advice).


    Chemistry


    Chemical Requirements


    Ni

    Mo

    Fe

    Cr

    C

    Si

    Mn

    Max

    Bal.

    30.0

    2.0

    1.0

    0.02

    0.10

    1.0

    Min


    26.0







    Tensile Data


    Mechanical Property Requirements


    Ultimate Tensile

    Yield Strength (0.2% OS)

    Elong. %

    R/A

    HardnessRockwell


    Min110 Ksi51 KSi40
    Max
    Min760 MPa350 MPa
    Max

    Specifications


    UNS N10665

    Bar

    ASTM B335 ASME SB335

    Wire


    Sheet

    ASTM B333

    Plate

    ASTM B333 ASME SB333

    Fitting

    ASTM B366 ASME SB366

    Forging

    ASTM B564

    Weld Wire

    A5.14 ERNiMo-7

    Weld Electrodes

    ASME SFA 5.11(ENiMo-7) AWS A5.11 (ENiMo-7)


    Seamless Pipe/Tube
    ASTM B622 ASME SB622
    Welded Pipe
    ASTM B619 ASME SB619
    Welded Tube
    ASTM B626 ASME SB626
    Bare Weld Rods
    ASME SFA 5.14(ENiMo-7)
    Din
    2.4617

    Formability
    Hastelloy B2 does work harden, but can be formed when the proper precautions are taken. Sheet (0.063" thick) in the heat treated condition at 1950°F and rapid quenched has an average olsen cup depth of 0.57" or 14.5mm.

    Welding
    Hastelloy B2 resists the formation of grain boundary carbide precipitates in the weld heat-affected zone, making it suitable for most chemical process applications in the as-welded condition. The heat-affected weld zones have reduced precipitation of carbides and other phases to ensure uniform corrosion resistance.


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