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Titanium-zirconium-molybdenum alloy 75-150μm

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Product Features

Titanium-zirconium-molybdenum alloy (Ti-ZR-Mo) is a ternary alloy system formed by titanium (Ti) as the matrix and the addition of zirconium (Zr) and molybdenum (Mo). The typical components are Ti-15Zr-4Mo and Ti-35Zr-10Mo (by mass fraction), and the performance can be optimized by adding trace amounts of niobium (Nb) and tin (Sn). It features high sphericity and excellent fluidity, controllable particle size, high purity and low oxygen content, high melting point and high-temperature stability, high strength and good plasticity, corrosion resistance and biocompatibility, low density and high specific strength, and other superior properties. It is mainly used in 3D printing additive manufacturing, powder metallurgy, hot isostatic pressing, etc., and can be applied in fields such as aerospace, energy and nuclear industry, electronics and advanced manufacturing, and biomedicine. 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-molybdenum alloy (Ti-ZR-Mo) is a ternary alloy system formed by titanium (Ti) as the matrix and the addition of zirconium (Zr) and molybdenum (Mo). The typical components are Ti-15Zr-4Mo and Ti-35Zr-10Mo (by mass fraction), and the performance can be optimized by adding trace amounts of niobium (Nb) and tin (Sn). It features high sphericity and excellent fluidity, controllable particle size, high purity and low oxygen content, high melting point and high-temperature stability, high strength and good plasticity, corrosion resistance and biocompatibility, low density and high specific strength, and other superior properties. It is mainly used in 3D printing additive manufacturing, powder metallurgy, hot isostatic pressing, etc., and can be applied in fields such as aerospace, energy and nuclear industry, electronics and advanced manufacturing, and biomedicine.

I. Characteristics

1. Balanced mechanical property matching: low elastic modulus, high strength and super toughness, excellent fatigue performance.

2. Excellent corrosion resistance: All-medium corrosion resistance and surface oxide film characteristics.

3. Biocompatibility and functionality: No cytotoxicity, bone-inducing activity

4. Wide temperature range service capability: high-temperature stability, low-temperature toughness

Ii. Application Fields

1. Biomedical implant field: Orthopedic implants, dental implants.

2. Chemical Engineering and Marine Engineering: Corrosion-resistant valves and pipes, Marine oil and gas equipment.

3. Aerospace and national Defense: Hot-end components of engines, structural components of missiles.

4. Energy and electronics field: Nuclear reactor materials, bipolar plates for fuel cells.

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