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NBH0058 Niobium Hafnium Alloy Lumps

Catalog No. NBH0058
Surface Polished
Size 20 mm*(30-50) mm*(30-50) mm
Material R04295 (Nb-10Hf) Nb-10W-10Hf (Niobium 10%Tungsten
Purity 99.9% 99.95% 99.99%
MSDS/SDS

Niobium Hafnium Alloy Lump is fine thermal resistant and anti-corrosive. They are used as alloy additives, superconducting materials, and the raw material for electronic beam melting.

Other Niobium Hafnium Alloy Products: Niobium Hafnium Alloy FoilNiobium Hafnium Alloy WireNiobium Hafnium Alloy Ingots

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Description
Specification
Technical Data Sheet

Niobium Hafnium Alloy Lumps Description

Niobium Hafnium Alloy Lumps are an exceptional material known for their unique physical and chemical properties. These lumps are composed of a blend of niobium and hafnium, two metals renowned for their high melting points and excellent corrosion resistance. Niobium Hafnium Alloy Lumps exhibit remarkable heat resistance, allowing them to retain their structural integrity even under extreme thermal conditions. Additionally, their high chemical stability ensures that they are not easily reactive with other elements, minimizing the risk of contamination in various industrial and research applications. These lumps are also noted for their exceptional density and strength, making them suitable for use in high-performance alloys and composites. Overall, Niobium Hafnium Alloy Lumps are a versatile material with numerous potential uses in fields ranging from aerospace engineering to nuclear technology.

Niobium Hafnium Alloy Lumps Specification

Surface
Polished
Size
20 mm*(30-50) mm*(30-50) mm
Material
R04295 (Nb-10Hf) Nb-10W-10Hf (Niobium 10%Tungsten
Purity
99.9% 99.95% 99.99%

Niobium Hafnium Alloy Lumps Applications

In the aerospace industry, Niobium Hafnium Alloy Lumps are often used in the manufacture of engine components, high-temperature structural parts, and critical assemblies for spacecraft due to their excellent resistance to high temperatures and corrosion. These components need to maintain stable performance in extreme temperatures and highly corrosive environments, and Niobium Hafnium Alloy Lumps fulfill these requirements.

In the nuclear industry, Niobium Hafnium Alloy Lumps are also critical. Due to their excellent radiation resistance and stability, they are used to manufacture key components in nuclear reactors, such as fuel cladding and structural supports. These components need to be able to withstand extremely high radiation and temperatures while remaining chemically stable, and Niobium Hafnium Alloy Lumps are ideally suited to meet these conditions.

In the electronics industry, Niobium Hafnium Alloy Lumps are also widely used in the manufacture of capacitors, resistors and other electronic components. Its excellent conductivity and stability enable these electronic components to have higher performance and longer service life.

Niobium Hafnium Alloy Lumps also play an important role in the metallurgical and chemical fields. They are often used as alloy additives to improve the mechanical properties and corrosion resistance of other metallic materials. Also, they are used as catalysts or reaction media in chemical production processes to improve the efficiency and selectivity of chemical reactions.

Niobium Hafnium Alloy Lumps Packing

Our Niobium Hafnium Alloy Lumps are tagged and labeled externally to ensure efficient identification and quality control. Great care is taken to avoid any damage which might be caused during storage or transportation.

FAQs

Q1: What are the primary applications of Niobium Hafnium Alloy Lumps?

A1: Niobium Hafnium alloy lumps are widely used in aerospace, high-temperature coatings, ultra-high-temperature alloys, and the nuclear industry, particularly in applications requiring high melting points, exceptional strength, and superior corrosion resistance.

Q2: Can the product be customized for specific requirements?

A2: Yes, we offer customization of the size, shape, and composition of Niobium Hafnium alloy lumps to meet unique industrial or research needs.

Q3: Are these alloy lumps suitable for high-temperature environments?

A3: Niobium Hafnium alloys have an extremely high melting point (above 3300°C) and exhibit excellent thermal stability in extreme high-temperature conditions, making them ideal for such applications.

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