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Product Introduction
Product Introduction
TC4 titanium alloy is a medium‑strength α‑β dual‑phase titanium alloy that exhibits excellent overall performance and is widely used in the aerospace industry. It can withstand long‑term service temperatures of up to 400°C and is primarily employed in the aviation sector for manufacturing engine fan and compressor disks and blades, as well as critical load‑bearing components such as beams, joints, and frames in aircraft structures.
| Chemical composition |
You |
Al |
V |
C |
Fe |
0 |
N |
H |
| Bal. |
5.5-6.75 |
3.5-4.5 |
≤0.08 |
≤0.3 |
≤0.12 |
≤0.03 |
≤0.015 |
| Physical properties |
D10(μm) |
D50(μm) |
D90(μm) |
Loose packing density (g/cm³) |
Tap density (g/cm³) |
Flowability (s/50g) |
| 23.04 |
43.48 |
61.61 |
2.5 |
2.86 |
35.40 |
Application areas
1. Aerospace
Application scenarios: engine blades, casings, landing gear components, satellite brackets, and more.
2. Medical devices
Application scenarios: artificial hip joints, knee joints, bone fixation plates, dental implants, and more.
3. High-end manufacturing
Automotive Industry: Racing engine pistons and lightweight chassis components (reducing weight to enhance power performance).
Marine Engineering: Pressure-resistant hulls for deep-sea submersibles and corrosion‑resistant connectors for drilling platforms.
Sports equipment: golf clubs, bicycle frames (high-strength + lightweight for enhanced performance).


TC4 titanium alloy powder
Category:
Brand: Asia Materials
Category: Titanium Alloy Powder
Product Name: TC4 Titanium Alloy Powder
European and American grades: BT-6 (Russia), Ti6Al4V (USA)
Specifications and model numbers: 0–20 μm, 15–45 μm, 15–53 μm, 45–105 μm, 53–150 μm
Reference standard: GB/T 3620.1
Appearance: Spherical
Oxygen content: ≤1300 ppm
For more product details, please contact our product experts. We look forward to your call.
Product Introduction
Product Introduction
TC4 titanium alloy is a medium‑strength α‑β dual‑phase titanium alloy that exhibits excellent overall performance and is widely used in the aerospace industry. It can withstand long‑term service temperatures of up to 400°C and is primarily employed in the aviation sector for manufacturing engine fan and compressor disks and blades, as well as critical load‑bearing components such as beams, joints, and frames in aircraft structures.
| Chemical composition |
You |
Al |
V |
C |
Fe |
0 |
N |
H |
| Bal. |
5.5-6.75 |
3.5-4.5 |
≤0.08 |
≤0.3 |
≤0.12 |
≤0.03 |
≤0.015 |
| Physical properties |
D10(μm) |
D50(μm) |
D90(μm) |
Loose packing density (g/cm³) |
Tap density (g/cm³) |
Flowability (s/50g) |
| 23.04 |
43.48 |
61.61 |
2.5 |
2.86 |
35.40 |
Application areas
1. Aerospace
Application scenarios: engine blades, casings, landing gear components, satellite brackets, and more.
2. Medical devices
Application scenarios: artificial hip joints, knee joints, bone fixation plates, dental implants, and more.
3. High-end manufacturing
Automotive Industry: Racing engine pistons and lightweight chassis components (reducing weight to enhance power performance).
Marine Engineering: Pressure-resistant hulls for deep-sea submersibles and corrosion‑resistant connectors for drilling platforms.
Sports equipment: golf clubs, bicycle frames (high-strength + lightweight for enhanced performance).


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