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Titanium Grade 2 Flange Specification


Specification: ASTM B381 / ASME SB381

Size: 1/2" (15 NB) to 48" (1200NB) DN10~DN5000

JIS: 5K, 10K, 16K, 20K, 30K, 40K, 63K

Dimension Standard: ANSI, ASME, BS, DIN, EN etc.

Type: Ring Joint Flange (RTJ), Flat Face Flange (FF),

Raised Face Flange (RF), Male and Female Flange (M & F),

Lap Joint Flange, Large and Small Tongue-and-Groove Flange (T & G)

Pressure rating: 150#, 300#, 600#, 900#, 1500#, 2500#,

PN6, PN10, PN16, PN25, PN40, PN64 etc.


Titanium Gr-2 flanges are essential components used in various industries due to their exceptional properties and characteristics. These flanges are made from Titanium Grade 2, a commercially pure titanium alloy with excellent corrosion resistance, high strength, and lightweight nature.


Titanium Gr-2 flanges are especially known for their corrosion-resistant properties. Therefore, they can be utilised in difficult conditions, including saltwater, harsh acidic compounds, and oxidising agents. Its applications are often seen in chemical, petrochemical, and marine industries. The reason for its impressive corrosion resistance is the formation of a layer of oxide on the surface of titanium which holds back deterioration and enables the titanium to last longer.

Titanium Gr-2 flanges also possess an impressive strength-to-weight ratio. Despite being lightweight, they offer remarkable strength and withstand high pressure and temperature. This property makes them suitable for oil and gas, aerospace, and power generation applications, where weight reduction is crucial without compromising strength and integrity.


In addition, Titanium Gr-2 flanges exhibit good weldability, allowing for easy fabrication and installation. They can be welded using various methods, including TIG (Tungsten Inert Gas) welding and resistance welding, ensuring a strong and secure connection. This property contributes to the ease of assembly and maintenance of systems where these flanges are used.


Titanium Grade 2 Flange Specifications


Titanium 3.7165 Flange Size Chart 1/2" (15 NB) to 48" (1200NB) DN10~DN5000
Test Certificates EN 10204/3.1B
Raw Materials Certificate
100% Radiography Test Report
Third Party Inspection Report, etc
ASTM B381 Titanium Grade 2 Flange JIS 5K, 10 K, 16 K 20 K, 30 K, 40 K, 63 K
Titanium gr 2 Flange UNI 6Bar 10Bar 16Bar 25Bar 40Bar
Ti Alloy Grade 2 FlangeEN 6Bar 10Bar 16Bar 25Bar 40Bar
Coating Oil Black Paint, Anti-rust Paint, Zinc Plated, Yellow Transparent, Cold and Hot Dip Galvanized
Titanium UNS R50400 SORF Flange Standards ANSI/ASME B16.5, B16.47 Series A & B, B16.48, BS4504, BS 10, EN-1092, DIN, ANSI Flanges, ASME Flanges, BS Flanges, DIN Flanges, EN Flanges, GOST Flange, ASME/ANSI B16.5/16.36/16.47A/16.47B, MSS S44, ISO70051, JISB2220, BS1560-3.1, API7S-15, API7S-43, API605, EN1092
Gr 2 Titanium Flange Pressure Rating ANSI Class 150 LBS, 300 LBS, 600 LBS, 900 LBS, 1500 LBS, 2500 LBS
Titanium Grade 2 Flange Pressure Calculation in DIN 6Bar 10Bar 16Bar 25Bar 40Bar / PN6 PN10 PN16 PN25 PN40, PN64
Most common types of Titanium Alloy Grade 2 Flange Forged / Threaded / Screwed / Plate
Titanium Grade 2 Flange Production technique
  • Forged, Heat treated and machined
Titanium UNS R50400 Flange Connect Type/ Flange Face Type 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
Special design

As per your drawing

AS, ANSI, BS, DIN and JIS
15 NB (1/2") to 200 NB (8")
Equal and Reducing Configurations

Gr 2 Titanium Flange Test Direct-reading Spectrograph, Hydrostatic testing machine, X-ray detector, UI trasonic flaw detector, Magnetic particle detector
ASTM B381 Titanium Grade 2 Flange Equipment Press machine, Bending machine, Pushing Machine, electric bevelling machine, Sand-blasting machine etc
Material Test Certificates (MTC) as per EN 10204 3.1 and EN 10204 3.2, Test Certificates certifying NACE MR0103, NACE MR0175

Titanium Gr-2 flanges provide heat consistency and are resilient to thermal expansion. They can thrive in fluctuating temperatures without compromising their structure, making them perfect for tasks in hot settings, such as heat exchangers and chemical reactors.

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