ASME SA213 / ASTM A213 316Ti UNS S31603 Stainless Steel Pipes
ASME SA213 ASTM A213 316Ti UNS S31603, EN 10216 - 5 1 4571 Stainless Steel Similar To Grade316LExcept That 31
Product Introduction
ASME SA213 / ASTM A213 316Ti UNS S31603, EN 10216 - 5 1.4571 Stainless Steel Similar To Grade 316L Except That 316Ti Has Better High Temperature Strength, And Mechanical Strength. Used For Equipment Exposed To Aggressive Corrosive Conditions And High Temperature Applications,Including Automotive Flexible Connectors, Welded Bellows, Chimney Liners, And Flexible Ducting.
Type 316Ti Stainless Steel Is An Improved Corrosion Resistant Chrome-Nickel Steel Alloy With High Content Of Molybdenum And Some Titanium. It Is Not A Typical Free Machining Grade And Therefore Not Recommended For Difficult High Speed Machining Process.Grade 316Ti Stainless Steel Has Been Traditionally Specified By German Engineers And Users With The Werkstoff Number 316Ti.The Former Steel Grade In The UK Was 320S31.
316Ti Stainless Steel Is Essentially A Standard Carbon 316 Type With Titanium Stabilisation And Is Similar In Principle To The Titanium Stabilisation Of The 304 (1.4301) Type To Produce 321 (1.4541). The Addition Of Titanium Is Made To Reduce The Risk Of Intergranular Corrosion (IC) Following Heating In The Temperature Range 425-815C.The Addition Of Titanium Reduces The Risk Of IC Since Titanium Carbo-Nitrides Are Formed In Preference To Chromium Carbides Which Has The Effect Of Maintaining The Correct Distribution Of Chromium Throughout The Structure Of The Steel.
The Weldability Of The 316Ti And 316L Can Be Assumed To Be Similar. Neither Of The Grades Can Be Expected To Weld 'Easier' Or 'Better' Than-The-Other. Niobium Stabilised Fillers (Welding Consumables) Should Be Used For Welding The 316Ti, Especially Where Elevated Temperature Weld Strength May Be Important. In Other Circumstances A '316L' Filler Should Give A Matching Weld Metal Aqueous Corrosion Resistance To That Of The 'Parent' '316Ti' Material. 316Ti SS Pipes - Industries & Applications
The 316Ti stainless pipes and tubes are used in a wide range of applications and various industries.
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Gas Processing Industries
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Petrochemical Industries
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Power Generation Industries
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Food Processing Industries
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Chemical Industries
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Oil & Gas Industries
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Fertilizers Industries
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Sugar Industries
316Ti SS Pipes Chemical Composition
Grade | 316Ti | |
---|---|---|
min | max | |
C | – | 0.08 |
Mn | – | 2.0 |
Si | – | 0.75 |
P | – | 0.045 |
S | – | 0.030 |
Cr | 16.0 | 18.0 |
Mo | 2.0 | 3.0 |
Ni | 10.0 | 14.0 |
N | – | – |
316Ti SS Pipes Mechanical Properties
Grade | 316Ti | |
---|---|---|
Tensile Strength (MPa) min | 515 | |
Yield Strength 0.2% Proof (MPa) min | 205 | |
Elongation (% in 50mm) min | 35 | |
Hardness | Rockwell B (HR B) max | 75 |
Rockwell B (HR B) max | 205 |
SS 316Ti Pipes Physical Properties
Grade | 316Ti | |
---|---|---|
Density (kg/m3) | 8000 | |
Elastic Modulus (GPa) | 193 | |
Mean Coefficient of Thermal Expansion (m/m/0C) | 0-1000C | 17.2 |
0-3150C | 17.8 | |
0-5380C | 18.4 | |
Thermal Conductivity (W/m.K) | at 1000C | 16.2 |
at 5000C | 21.5 | |
Specific Heat 0-1000C (J/kg.K) | 500 | |
Electrical Resistivity (n.m) | 720 |
SS 316Ti Pipes Equivalent Grades
Grade | 316Ti | |
UNS No | S31635 | |
Old British | BS | 320S31 |
En | X6CrNiMoTi17-12-2 | |
Euronorm | No | 1.4571 |
AFNOR | Z6CNDT17-12 | |
GOST | 08Ch17N13M2T | |
Japanese JIS | SUS 316Ti |
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