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Titanium-zirconium-niobium-tantalum-nickel alloy 45-150μm

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Product Features

Titanium-zirconium-niobium-tantalum-nickel alloy is a multi-element alloy system composed of five metal elements: titanium (Ti), zirconium (Zr), niobium (Nb), tantalum (Ta), and nickel (Ni). This alloy has achieved multi-dimensional optimization of mechanical properties, corrosion resistance, biocompatibility and processing performance through the synergistic effect among elements, and has shown great application potential in fields such as aerospace, biomedicine, chemical engineering and energy. Order quantity (minimum order quantity) : As determined by both parties. Payment method: As determined by both parties Product Origin: Foshan, Guangdong Shipment: As confirmed by both parties Order delivery time: 3-7 days for stock. The customized delivery date shall be negotiated by both parties.

Classification:Metal Powders

Keywords: tantalum powder, tungsten powder

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Product details


Titanium-zirconium-niobium-tantalum-nickel alloy is a multi-element alloy system composed of five metal elements: titanium (Ti), zirconium (Zr), niobium (Nb), tantalum (Ta), and nickel (Ni). This alloy has achieved multi-dimensional optimization of mechanical properties, corrosion resistance, biocompatibility and processing performance through the synergistic effect among elements, and has shown great application potential in fields such as aerospace, biomedicine, chemical engineering and energy.

 

I. Characteristics

Mechanical properties: A balance between high strength and good toughness

2. Corrosion resistance: Advantage in corrosion resistance across all media

3. Biocompatibility: An ideal choice for medical materials

Ii. Application Fields \ n \ n

1. Biomedical field: It can be used to manufacture orthopedic implants, dental implants, and cardiovascular stents.

2. Aerospace field: It can be used to manufacture engine components and structural parts.

3. Chemical industry: It can be used to manufacture corrosion-resistant equipment and catalyst carriers.

4. Energy field: It can be used to manufacture component materials such as fuel casings, fuel cells, and control rods.

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