The most commonly used pure titanium and has excellent corrosion resistance. Its low density, superior strength-to-weight ratio, and good formability make it the preferred material for many aerospace, automotive, medical, and consumer applications.
Tensile Strength (Ultimate): 240 MPa, 34800 psi (Yield): 170 – 310 MPa, 24700 – 45000 psi
Shear Modulus: 45 GPa, 6530 ksi
Elongation at Break: 24 %
Hardness (Brinell): 120
Density: 4.51 g/cc, 0.163 lb/in³
Maximum Service Temp: 600 °C, 1100 °F
The lowest strength of all commercially pure titanium grades, but still considered strong. It has a higher corrosion resistance than other titanium alloys and is used in a variety of applications, including chemical processing equipment and marine components.
Tensile Strength (Ultimate): 344 MPa, 49900 psi (Yield): 275 – 410 MPa, 39900 – 59500 psi
Shear Modulus: 45 GPa, 6530 ksi
Elongation at Break: 20 %
Hardness (Brinell): 142
Density: 4.51 g/cc, 0.163 lb/in³
Maximum Temp: 1665 °C, 3030 °F
Highly weldable and has excellent corrosion resistance, making it a popular option for fabricators and manufacturers. It is used in medical implants, automotive, aircraft, and consumer goods.
Tensile Strength (Ultimate): 440 MPa, 63800 psi (Yield): 377 – 520 MPa, 54700 – 75400 psi
Shear Modulus: 45 GPa, 6530 ksi
Elongation at Break: 18 %
Hardness (Brinell): 225
Density: 4.5 g/cc 0.163 lb/in³
Maximum Temp: 1660 °C, 3020 °F
It has excellent weldability, corrosion resistance, and fatigue strength, making it an ideal choice for aerospace components and other demanding applications.
Tensile Strength (Ultimate): 550 MPa, 79800 psi (Yield): 480 – 552 MPa, 69600 – 80100 psi
Shear Modulus: 40 GPa, 5800 ksi
Elongation at Break: 15 %
Hardness (Brinell): 265
Density: 4.51 g/cc, 0.163 lb/in³
Maximum Temp: 1660 °C, 3020 °F
The perfect combination of strength, weldability, and formability. Excellent corrosion resistance, superior mechanical properties, and higher strength than commercially pure titanium.
Tensile Strength (Ultimate): 950 MPa, 138000 psi (Yield): 880 MPa, 128000 psi
Shear Modulus: 44 GPa, 6380 ksi
Elongation at Break: 14 %
Hardness (Brinell): 334
Density: 4.43 g/cc, 0.16 lb/in³
Maximum Temp: 1604 – 1660 °C, 2920 – 3020 °F
A lightweight, strong, and corrosion-resistant alloy with a relatively high strength-to-weight ratio. It’s highly resistant to oxidation and corrosion, which makes it ideal for use in a variety of applications
Tensile Strength (Ultimate): 620 MPa, 89900 psi (Yield): 500 MPa, 72500 psi
Shear Modulus: 44.0 GPa, 6380 ksi
Elongation at Break: 15 %
Hardness (Brinell): 256
Density: 4.48 g/cc, 0.162 lb/in³
Maximum Temp: 1700 °C, 3090 °F
Every titanium part produced at 3ERP undergoes rigorous quality inspection using coordinate measuring machines (CMM) to verify dimensional accuracy against GD&T specifications. We provide full inspection reports, including first article inspection (FAI) documentation compliant with AS9102 standards, ensuring complete traceability from raw material certification through final shipment.
CNC machining services are an integral part of manufacturing in the aerospace industry. A high level of precision is essential for safety-critical aircraft components. Machinable parts include prototypes, fuel panels, landing gear, and engine mounts.
The marine industry requires very durable parts that must withstand harsh weather and environmental conditions. 3ERP offers a range of CNC titanium machining services that create highly durable components for commercial and recreational marine vessels, such as ship propellers, outboard motor parts, ship engine parts, and marine pumps.
Medical equipment and devices must be extremely precise and accurate to ensure patient safety. 3ERP can produce precision-engineered titanium components using CNC machining. Our services are used in various medical devices such as orthopedic titanium implants, dental products, and surgical tools.