• Zirconium Hex Nuts

    Zirconium Hex Nuts

    Commercially pure zirconium nuts, also known as zirconium 702, are most well-known for their superior corrosion resistance in some of the harshest environments that include:
    • Hydrochloric Acid• Sulfuric Acid• Formic Acid• Nitric Acid • Acetic Acid
    It is also a metal that offers industry unique properties. It does not absorb neutrons, making it ideal for use in nuclear power and at low temperatures it is superconductive, making it ideal for super magnets.

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  • Zirconium Shoulder Bolts

    Zirconium Shoulder Bolts

    Commercially pure zirconium shoulder bolts, also known as zirconium 702, are most well-known for their superior corrosion resistance in some of the harshest environments that include:
    • Hydrochloric Acid• Sulfuric Acid• Formic Acid• Nitric Acid • Acetic Acid
    It is also a metal that offers industry unique properties. It does not absorb neutrons, making it ideal for use in nuclear power and at low temperatures it is superconductive, making it ideal for super magnets.

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  • Zirconium Hex Bolts

    Zirconium Hex Bolts

    Commercially pure zirconium hex head bolts, also known as zirconium 702, are most well-known for their superior corrosion resistance in some of the harshest environments that include:
    •  Hydrochloric Acid•  Sulfuric Acid•  Formic Acid•  Nitric Acid •  Acetic Acid  
    It is also a metal that offers industry unique properties. It does not absorb neutrons, making it ideal for use in nuclear power and at low temperatures it is superconductive, making it ideal for super magnets.

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  • Alloy 330 Hex Cap Screws

    Alloy 330 Hex Cap Screws

    Alloy 330 hex head cap screws are specifically designed for high temperature furnace applications such as vacuum furnaces, heat treating and brazing applications. The most prized trait of alloy 330 is its ability perform under cyclic conditions of temperature extremes from heating and cooling; as well as in alternate carburizing and oxidizing atmospheres. An austenitic nickel-chromium-iron-silicon alloy, 330 hex head cap screws also offer industry a low coefficient of expansion, excellent ductility, and high strength.

    Benefits & Corrosion Resistance

    Resistance to thermal shock from repeated quenching
    High level of resistance to oxidation and carburization
    Ability to handle thermal cycling
    Provides resistance to scale formation up to about 2000°F
    Good resistance to nitrogen-containing atmospheres where the oxygen content is low
    High nickel content of 34-37% provides high resistance to chloride stress corrosion cracking and embrittlement
    Applications for Alloy 330 Hex Head Cap Screws

    Alloy 330 hex head screws are often used in furnaces, thermal processing and heat treating applications.
    Gas turbine components and boiler fixtures used in power generation often use Alloy 330 hex head screws.
    Because of its resistance to nitrogen rich environments, alloy 330 hex head screws are used extensively for components handling cracked ammonia.

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  • Alloy 330 Hex Bolts

    Alloy 330 Hex Bolts

    Alloy 330 hex head bolts are specifically designed for high temperature furnace applications such as vacuum furnaces, heat treating and brazing applications. The most prized trait of alloy 330 is its ability perform under cyclic conditions of temperature extremes from heating and cooling; as well as in alternate carburizing and oxidizing atmospheres. An austenitic, nickel-chromium-iron-silicon alloy, 330 hex head bolts also offer industry a low coefficient of expansion, excellent ductility, and high strength.

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  • Alloy 330 Vented Screws

    Alloy 330 Vented Screws

    Alloy 330 vented screws are specifically designed for high temperature furnace applications such as vacuum furnaces, heat treating and brazing applications. The most prized trait of alloy 330 is its ability perform under cyclic conditions of temperature extremes from heating and cooling; as well as in alternate carburizing and oxidizing atmospheres. An austenitic nickel-chromium-iron-silicon alloy, 330 vented screws also offer industry a low coefficient of expansion, excellent ductility, and high strength.

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  • Alloy 330 Torx Screws

    Alloy 330 Torx Screws

    Alloy 330 torx screws are specifically designed for high temperature furnace applications such as vacuum furnaces, heat treating and brazing applications. The most prized trait of alloy 330 is its ability perform under cyclic conditions of temperature extremes from heating and cooling; as well as in alternate carburizing and oxidizing atmospheres. An austenitic, nickel-chromium-iron-silicon alloy, 330 torx screws also offer industry a low coefficient of expansion, excellent ductility, and high strength.

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  • Alloy 330 Socket Head Cap Screws

    Alloy 330 Socket Head Cap Screws

    Alloy 330 socket head cap screws are specifically designed for high temperature furnace applications such as vacuum furnaces, heat treating and brazing applications. The most prized trait of alloy 330 is its ability perform under cyclic conditions of temperature extremes from heating and cooling; as well as in alternate carburizing and oxidizing atmospheres. An austenitic nickel-chromium-iron-silicon alloy, 330 socket head cap screws also offer industry a low coefficient of expansion, excellent ductility, and high strength.

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  • Alloy 330 Set Screws

    Alloy 330 Set Screws

    Alloy 330 set screws are specifically designed for high temperature furnace applications such as vacuum furnaces, heat treating and brazing applications. The most prized trait of alloy 330 is its ability perform under cyclic conditions of temperature extremes from heating and cooling; as well as in alternate carburizing and oxidizing atmospheres. An austenitic nickel-chromium-iron-silicon alloy, 330 set screws also offer industry a low coefficient of expansion, excellent ductility, and high strength.

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