Titanium Grade 2 Flanges are crucial components in various industrial applications, offering a combination of exceptional corrosion resistance, high strength, and low density. Titanium Grade 2, also known as commercially pure titanium, is a widely used grade in the titanium family due to its excellent weldability and formability.
Corrosion Resistance: One of the primary reasons for the popularity of Titanium Grade 2 flanges is their outstanding corrosion resistance. These flanges perform exceptionally well in corrosive environments, including those containing chlorides and seawater. This corrosion resistance makes them suitable for applications in chemical processing, marine engineering, and other industries where exposure to harsh elements is a concern.
Strength and Lightweight: Despite its impressive strength, Titanium Grade 2 is relatively lightweight compared to other metals like steel. This combination of high strength and low density is particularly advantageous in applications where weight is a critical factor, such as aerospace and automotive industries. The lightweight nature of Grade 2 titanium reduces the overall load on structures without compromising strength.
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Weldability and Formability: Another notable feature of Titanium Grade 2 is its excellent weldability and formability. This makes it easier for manufacturers to fabricate complex shapes and structures using these flanges. The ability to weld Grade 2 titanium without significant loss of strength or corrosion resistance is a key advantage in various fabrication processes.
Temperature Resistance: Titanium Grade 2 flanges exhibit excellent resistance to high temperatures. This property makes them suitable for use in applications where exposure to elevated temperatures is common, such as in heat exchangers and chemical processing equipment.
These Applications: Titanium Grade 2 flanges find applications in diverse industries, including chemical processing, aerospace, marine engineering, and oil and gas. They are commonly used in the construction of pipelines, pressure vessels, and various components in chemical plants. Their corrosion resistance and biocompatibility also make them suitable for medical implants.
ASTM B564 / ASME SB564, ANSI Flanges, ASME Flanges, BS Flanges, DIN Flanges, EN Flanges, etc.
ANSI/ASME B16.5, B 16.47 Series A & B, B16.48, BS4504, BS 10, EN-1092, DIN, etc.
1/2" (15 NB) to 48" (1200NB)
150#, 300#, 600#, 900#, 1500#, 2500#, PN6, PN10, PN16, PN25, PN40, PN64 etc.
Raised Face (RF), Ring Type Joint (RTJ), Flat Face (FF), Large Male-Female (LMF), Lap-Joint Face (LJF), Small Male-Female (SMF), Small Tongue, Large Tongue & Groove, Groove
Forged / Threaded / Screwed / Plate
Plate Flange, Loose Plate Flange, Loose Plate With Weld Neck Flange, Blank Flange, Welding Neck Flange, Hubbed Slip on Flange, Hubbed Threaded Flange, Lapped Pipe End Flange.
All Flanges are marked as follows: Grade, Standard, Thickness, Heat No. (Or according to the customer’s request.)
STANDARD | UNS | WERKSTOFF NR. |
Titanium Gr 2 | R50400 | 3.7035 |
Titanium Gr 2 | C | Ti | N | Fe | H | O | V | Al |
0.1 max | 99.2 min | 0.03 max | 0.3 max | 0.015 max | 0.25 max | – | – |
Density | Melting Point | Yield Strength (0.2%Offset) | Tensile Strength | Elongation |
4.5 g/cm3 | 1665 °C (3030 °F) | Psi – 39900 , MPa – 275 | Psi – 49900 , MPa – 344 | 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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