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Aluminum-molybdenum-niobium-tantalum-titanium-zirconium alloy 15-53μm

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Product Features

Aluminum-molybdenum-niobium-tantalum-titanium-zirconium alloy powder is a high-entropy alloy powder system composed of six metal elements: aluminum (Al), molybdenum (Mo), niobium (Nb), tantalum (Ta), titanium (Ti), and zirconium (Zr). This alloy, relying on the synergistic effect of multiple elements, breaks through the performance limitations of traditional alloys and achieves significant improvements in mechanical properties, corrosion resistance, high-temperature resistance, etc., becoming a key material in high-end manufacturing fields such as aerospace, energy, and chemical engineering. 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


Aluminum-molybdenum-niobium-tantalum-titanium-zirconium alloy powder is a high-entropy alloy powder system composed of six metal elements: aluminum (Al), molybdenum (Mo), niobium (Nb), tantalum (Ta), titanium (Ti), and zirconium (Zr). This alloy, relying on the synergistic effect of multiple elements, breaks through the performance limitations of traditional alloys and achieves significant improvements in mechanical properties, corrosion resistance, high-temperature resistance, etc., becoming a key material in high-end manufacturing fields such as aerospace, energy, and chemical engineering.

 

I. Characteristics

Mechanical properties: A perfect balance of high strength and high toughness

2. Corrosion resistance: Outstanding performance in corrosion resistance across all media

3. High-temperature performance: Excellent thermal stability and oxidation resistance

Ii. Application Fields

Aerospace: It is used to manufacture hot-end components such as combustion chambers, turbine blades, and guide vanes for aero engines.

2. Energy: It can be used as material for fuel cladding, control rods, core structural components, etc. In the field of fuel cells, it can also be used as bipolar plate material.

3. Chemical industry: Applied in chemical reactors, heat exchangers, pipelines, valves and other equipment, as well as catalyst carriers.

4. Biomedicine: It is used in the manufacture of artificial joints (such as hip and knee joints), spinal fuses, internal bone fixation devices, etc., and dental implants.

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