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Niobium Zirconium Alloy Tube and Pipe

Niobium Zirconium Alloy Tube and Pipe

Linear Formula: NbZr

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Features

Linear Formula:

NbZr

Standard:

ASTM B394

Purity:

99.9%, 99.95%, 99.99%

Size:

Tube & Pipe: OD 1.0-100mm, WT 0.2-5.0mm, L 200-3000mm

Capillary: OD 0.2-8.0mm, WT 0.015-0.5mm, Length Customized

Surface:

Polished

Material Grades:

R4251 (Nb-1Zr) Reactor Grade

R4261 (Nb-1Zr) Commercial Grade

 


 

Product Description

Niobium Zirconium Alloy Tube and Pipe are advanced high-performance materials offering excellent strength, resistance to corrosion, and durability under extreme conditions. Combining niobium's high-temperature stability and zirconium's exceptional resistance to corrosion, these tubes and pipes are ideal for industries such as aerospace, nuclear energy, chemical processing, and more.

These alloy tubes and pipes are commonly used in applications requiring high-performance materials, such as reactors, heat exchangers, and even medical implants. Their unique properties make them well-suited to withstand harsh chemical environments and high temperatures, ensuring a long lifespan and high reliability in challenging conditions. Custom sizes and configurations are available based on specific requirements.

 


 

Features and Properties

High-Temperature Resistance: Excellent performance in high-temperature environments without degradation.

Corrosion Resistance: Outstanding resistance to corrosion in acids, alkalis, and other reactive chemicals.

Superior Strength-to-Weight Ratio: Offers a balance of high strength and low weight, making them ideal for aerospace and reactor applications.

Excellent Formability: Can be easily machined into complex shapes for custom applications.

Non-Toxic and Biocompatible: Suitable for use in medical applications due to their safety and compatibility with human tissues.

 


 

Product Specifications

Composition: 90-97% Niobium, 3-10% Zirconium

Surface Finish: Bright, matte, or custom finishes as needed.

 


 

Product Standards

ASTM B394: Standard Specification for Niobium and Niobium Alloy Seamless and Welded Tubes.

ISO 9001: Compliance with quality management standards.

RoHS: Compliance with environmental safety standards, free of hazardous substances.

 


 

Product Forms

Standard Tubes: Perfect for applications requiring consistent, cylindrical shapes.

Custom Pipe Shapes: Tailored designs for unique or complex projects requiring specific dimensions and features.

 


 

Production Method and Production Equipments

Production Methods:

Vacuum Arc Melting: Used to create high-purity alloy material.

Extrusion: Forming tubes and pipes to precise dimensions.

Cold Rolling: To adjust the thickness of the tube and pipe to the desired level.

Annealing: For stress-relief and to enhance material ductility.

Production Equipments:

Vacuum Induction Furnace: To achieve uniform alloy composition and purity.

Extrusion Press: To shape the alloy into tubes and pipes.

Hydraulic Press: For forming and shaping pipes.

Cold Rolling Mill: To fine-tune tube thickness.

 


 

Applications and Related Industries

Aerospace: Used in components subjected to high stresses and high temperatures.

Nuclear Power: Extensively used in nuclear reactor systems due to their resistance to corrosion and high temperatures.

Chemical Processing: In reactors, heat exchangers, and other equipment exposed to aggressive chemicals.

Medical: Employed in medical devices and implants due to their biocompatibility.

 


 

Interesting Facts

Resistance to Neutron Radiation: Niobium zirconium alloys are particularly resistant to the effects of neutron radiation, making them ideal for use in nuclear reactors.

Space Exploration: These alloys are used in high-performance aerospace applications, including satellite components and space vehicle engines.

Long-Lasting Durability: Niobium zirconium alloy tubes and pipes have an incredibly long lifespan in environments exposed to high temperatures and chemical corrosion.

 


 

Synonyms

Niobium Zirconium Alloy Tubing

Nb-Zr Alloy Pipe

Niobium Zirconium Pipe and Tube

 


 

Health & Safety Information

Handling: Wear gloves, safety goggles, and dust masks when handling and machining the alloy to prevent exposure to fine particles or fumes.

Storage: Store in a dry environment to prevent oxidation or surface degradation.

Disposal: Recycle through authorized recycling centers in accordance with local environmental regulations.

Safety Precautions: Adequate ventilation is required when machining or welding to avoid inhaling fumes or dust generated during the process.

 


 

Why Choose Us for Niobium Zirconium Alloy Tube and Pipe?

Premium Quality: We manufacture high-purity niobium zirconium alloy tubes and pipes that meet industry standards.

Customization: We offer flexible sizing, wall thickness, and surface finish options tailored to your specific needs.

Global Reach: With worldwide shipping, we ensure your orders arrive on time, wherever you are.

Expert Support: Our experienced technical team offers valuable insights to help you select the best alloy materials for your project.

Contact us now for a quote or to discuss your requirements for Niobium Zirconium Alloy Tubes and Pipes!

 

Chemical Composition of Niobium Zirconium Alloy Tube and Pipe

Elements %

R04251

R04261

Nb

98.6 - 99.2

98.1 - 99.2

Zr

0.8 - 1.2

0.8 - 1.2

Ta

0 - 0.1

0 - 0.5

W

0 - 0.030

0 - 0.050

Ti

0 - 0.020

0 - 0.050

Hf

0 - 0.020

0 - 0.025

O

0 - 0.015

0 - 0.020

C

0 - 0.010

0 - 0.020

Mo

0 - 0.010

0 - 0.010

N

0 - 0.010

0 - 0.010

Si

0 - 0.0050

0 - 0.010

Ni

0 - 0.0050

0 - 0.0050

Fe

0 - 0.0050

0 - 0.0050

H

0 - 0.0015

0 - 0.0015

Chemical Identifiers

Linear Formula

NbZr

MDL Number

N/A

EC No.

N/A

Pubchem CID

71355178

IUPAC Name

niobium; zirconium

SMILES

[Zr].[Nb]

InchI Identifier

InChI=1S/Nb.Zr

InchI Key

GFUGMBIZUXZOAF-UHFFFAOYSA-N

Niobium Zirconium Alloy Properties (Theoretical)

Compound Formula

NbZr

Appearance

Metallic solid in various forms tube, sheet/plate, bar, foil, wire, rod, sputtering target

Melting Point

2399 °C

Boiling Point

N/A

Density

8.59 g/cm3

Solubility in H2O

N/A

Tensile Strength

330-620 MPa

Vickers Hardness

65-140

Monoisotopic Mass

182.811 g/mol

 

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