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Product Introduction
Product Introduction
Industrial-grade pure titanium refers to several grades of unalloyed titanium with varying levels of impurities such as iron, carbon, oxygen, and nitrogen; it cannot be strengthened by heat treatment. It exhibits excellent formability and is readily weldable by fusion welding and brazing. Primarily used for manufacturing various non‑load‑bearing structural components, it can withstand long‑term service temperatures up to 300°C and is employed in the production of aircraft and engine parts, including interior skin panels, corrugated sheets, firewalls, and cast stationary structural components for aircraft engine nacelles.
| Chemical composition |
Ti |
Fe |
C |
0 |
N |
H |
| Bal. |
≤0.25 |
≤0.1 |
≤0.15 |
≤0.03 |
≤0.015 |
|
| Physical properties |
D10(μm) |
D50(μm) |
D90(μm) |
Loose packing density (g/cm³) |
Tap density (g/cm³) |
Flowability (s/50g) |
| 21.50 |
44.90 |
62.74 |
1.97 |
41 |
3.18 |
Application areas
1. Aviation sector
It is primarily used to manufacture critical components such as aircraft engine blades, compressor blades, and turbine disks. Thanks to its high strength, excellent toughness, and superior high-temperature stability, TA1 titanium alloy meets the stringent material‑performance requirements of aerospace applications, giving it broad prospects for use in the aviation industry.
2. Aerospace field
It is primarily used to manufacture components such as rocket engine casings, propellant tanks, and satellite structures. In the aerospace field, materials must withstand extreme environmental conditions—including high temperatures, high pressures, and intense radiation—while TA1 titanium alloy exhibits excellent corrosion resistance, high‑temperature stability, and superior mechanical properties, making it one of the key materials in aerospace applications.
3. Chemical Industry
It is primarily used to manufacture components such as chemical equipment, reaction vessels, and storage tanks. Given that the chemical industry often operates under harsh conditions—such as exposure to strong acids, strong alkalis, and high temperatures—the TA1 titanium alloy, with its outstanding corrosion resistance and thermal stability, can maintain consistent performance over long periods, thereby providing reliable support for chemical production.
TA1
Category:
Brand: Asia Materials
Category: Titanium Alloy Powder
Product Name: TA1
European and American grade: Ti Cp
Specification and model: 15–53 µm, 45–105 µm, 53–150 µm
Reference standard: GB/T 3620.1
Appearance: Spherical
Oxygen content: ≤1200 ppm
For more product details, please contact our product experts. We look forward to your call.
Product Introduction
Product Introduction
Industrial-grade pure titanium refers to several grades of unalloyed titanium with varying levels of impurities such as iron, carbon, oxygen, and nitrogen; it cannot be strengthened by heat treatment. It exhibits excellent formability and is readily weldable by fusion welding and brazing. Primarily used for manufacturing various non‑load‑bearing structural components, it can withstand long‑term service temperatures up to 300°C and is employed in the production of aircraft and engine parts, including interior skin panels, corrugated sheets, firewalls, and cast stationary structural components for aircraft engine nacelles.
| Chemical composition |
Ti |
Fe |
C |
0 |
N |
H |
| Bal. |
≤0.25 |
≤0.1 |
≤0.15 |
≤0.03 |
≤0.015 |
|
| Physical properties |
D10(μm) |
D50(μm) |
D90(μm) |
Loose packing density (g/cm³) |
Tap density (g/cm³) |
Flowability (s/50g) |
| 21.50 |
44.90 |
62.74 |
1.97 |
41 |
3.18 |
Application areas
1. Aviation sector
It is primarily used to manufacture critical components such as aircraft engine blades, compressor blades, and turbine disks. Thanks to its high strength, excellent toughness, and superior high-temperature stability, TA1 titanium alloy meets the stringent material‑performance requirements of aerospace applications, giving it broad prospects for use in the aviation industry.
2. Aerospace field
It is primarily used to manufacture components such as rocket engine casings, propellant tanks, and satellite structures. In the aerospace field, materials must withstand extreme environmental conditions—including high temperatures, high pressures, and intense radiation—while TA1 titanium alloy exhibits excellent corrosion resistance, high‑temperature stability, and superior mechanical properties, making it one of the key materials in aerospace applications.
3. Chemical Industry
It is primarily used to manufacture components such as chemical equipment, reaction vessels, and storage tanks. Given that the chemical industry often operates under harsh conditions—such as exposure to strong acids, strong alkalis, and high temperatures—the TA1 titanium alloy, with its outstanding corrosion resistance and thermal stability, can maintain consistent performance over long periods, thereby providing reliable support for chemical production.
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