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Superior Oxidation NiCrFe Alloy CX601 for Demanding Environments

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Superior Oxidation NiCrFe Alloy CX601 for Demanding Environments

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Brand Name : Senphus

Model Number : CX601

Certification : ISO9001

Place of Origin : China

MOQ : 5kg

Payment Terms : T/T, D/P

Supply Ability : 30 Tons per day

Delivery Time : 3 days

Packaging Details : Packed with waterproof paper or weave bag, into pallets or wooden case. Special packaging requirements can also be accommodated.

Place of Orig : China

Type : Nickel-Chromium-Iron alloy

Application : Chemical and heating

Color : Shiny silver or dark gray

Density : 8.06

Young's modulus : 206

Electrical Resistivity at 20°C : 119

Tensile strength(N/mm²) : 700-900

Elongation(% at L0=100 mm) : 25-40

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Superior Oxidation NiCrFe Alloy CX601 for Demanding Environments

CX601 Nickel Chromium Iron Heating Wire is a type of resistance wire commonly used in various industrial heating applications. It consists of a blend of nickel, chromium, and iron, which gives it its unique properties, such as high resistivity and good corrosion resistance at high temperatures.

If you're considering using this wire for a specific application, it's important to ensure that the maximum operating temperature and environmental factors (like exposure to certain gases or chemicals) are within the wire's capabilities.

Nominal Chemical Composition (%)

Alloy Ni Mn Fe Si Cr C AI
CX600 ≥72.0 ≤1.0 6.0-10.0 ≤0.50 14-17 ≤0.15 ≤0.50
CX601 58-63 ≤1.0 Balance ≤0.50 21-25 ≤0.10 1.0-1.7

Mechanical Properties (at room temperature for annealed wire)

Alloy Tensile strength (N/mm2) Elongation (% at L0=100mm)
Min Max Min Max
CX600 600 800 25 40
CX601 700 900 25 40

Some key features of CX601 include:

  • Resistance to Corrosion and Oxidation:

The chromium content in the wire improves its resistance to oxidation, even at high temperatures. This makes it ideal for applications where the wire will be exposed to air at elevated temperatures.

  • High Electrical Resistance:

The alloy has a high electrical resistance, making it suitable for heating applications such as heating elements in industrial furnaces, toasters, and other electric heating devices.

  • Temperature Stability:

CX601 wire can withstand continuous operation at high temperatures, typically up to 1100°C (2012°F), making it useful for both low and high-temperature heating systems.

  • Mechanical Strength:

It maintains good mechanical strength even at high temperatures, reducing the risk of breakage or failure.

  • Formability:

The wire is easily formed into coils, which is important for applications like heating elements.

Applications:

  • Electric Heaters: Used in heating coils for ovens, furnaces, and kilns.
  • Industrial Heating Systems: In high-temperature environments where oxidation resistance is important.
  • Home Appliances: For electric stoves, hair dryers, and toasters.
  • Temperature Sensors: CX601 can also be used in temperature-sensing applications, where resistance changes with temperature.

Advantages:

  • High resistance to oxidation: Suitable for prolonged use at elevated temperatures without degradation.
  • Stable electrical resistance: Its resistance doesn't fluctuate significantly with temperature changes, which is important for maintaining consistent heating.
  • Durability: It has a good life expectancy in environments with fluctuating temperatures.

Comparison with Other Alloys:

Compared to standard nichrome (NiCr) wires, CX601 generally offers superior performance in terms of oxidation resistance, especially at higher temperatures. However, its specific composition may make it slightly more expensive than traditional nichrome.

If you're considering using CX601 wire for a specific application, it’s crucial to assess the operating conditions like temperature, environment (air, vacuum, etc.), and mechanical stresses to ensure it meets your needs.

Superior Oxidation NiCrFe Alloy CX601 for Demanding EnvironmentsSuperior Oxidation NiCrFe Alloy CX601 for Demanding EnvironmentsSuperior Oxidation NiCrFe Alloy CX601 for Demanding Environments


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