Titanium Grade 2 fasteners are essential components in various industries due to the unique properties of titanium, making them a popular choice for applications where strength, corrosion resistance, and lightweight characteristics are crucial.
Chemical Composition: Titanium Grade 2 is a commercially pure titanium alloy with a chemical composition primarily consisting of titanium (Ti), oxygen (O), and small amounts of other elements such as iron (Fe), carbon (C), nitrogen (N), and hydrogen (H). This alloy is known for its excellent corrosion resistance in oxidizing environments.
Corrosion Resistance: One of the standout features of Titanium Grade 2 fasteners is their exceptional corrosion resistance. They are highly resistant to corrosion in various environments, including seawater, making them suitable for marine and offshore applications. This resistance to corrosion is due to the formation of a protective oxide layer on the surface of the titanium, preventing further degradation.
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Strength-to-Weight Ratio: Titanium Grade 2 boasts an impressive strength-to-weight ratio, providing high strength while being significantly lighter than many other metals, including steel. This characteristic makes Grade 2 titanium fasteners ideal for applications where weight reduction is critical, such as aerospace and automotive industries.
Temperature Resistance: Titanium Grade 2 fasteners maintain their mechanical properties at elevated temperatures, making them suitable for high-temperature applications. This attribute is particularly valuable in industries like aerospace and chemical processing where components are exposed to extreme temperatures.
Biocompatibility: Due to its biocompatibility, Titanium Grade 2 is widely used in medical applications, including the manufacturing of surgical implants and medical devices. The inert nature of titanium minimizes the risk of allergic reactions and ensures compatibility with the human body.
Applications: Titanium Grade 2 fasteners find applications in a range of industries, including aerospace, chemical processing, marine engineering, medical, and offshore oil and gas. They are commonly used in the construction of aircraft, chemical processing equipment, seawater piping systems, and medical implants.
ASTM F468
DIN, ISO ,JIS ,GB, IS, BS, ASTM and all International Standards
M3 - M100 | 3/6″ - 4″ | Custom Sizes
DIN 931, 933, 934, 7991, 976, 125, ASME B18.2.1, B18.3
UNF, BSW, BSF, METRIC, UNC, or as required
ASME B1.1 2A/3A – 2B/3B Inch Unified Threads and B1.13M 6h-6G Metric Coarse Threads
Hex, Threading, Square, Round as per Gauge Etc.
Hex, Square, Round, Hex flange, Flat, T-head & Triangular etc.
STANDARD | UNS | WNR. |
Titanium Grade 2 | R50400 | 3.7035 |
Grade | C | N | O | H | Ti | Fe |
Ti Gr.2 | 0.10 max | 0.03 max | 0.25 max | 0.015 max | Bal | 0.30 max |
Element | Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
Ti Gr. 2 | 4.5 g/cm3 | 1665 °C (3030 °F) | Psi – 49900 , MPa – 344 | Psi – 39900 , MPa – 275 | 20 % |
Oil & Gas Industrires
Chemical Industries
Construction Industries
Offshore Pipelines & Pipe Works
Petrochemical Industry
Shipbuilding Industries
Hydraulic Applications
Piping Systems
Refining Industry
Food Processing Industry
Pulp & Paper Industry
Power Plant Industry
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