Straight Seamless 316L Stainless-Steel Tubing
Straight Seamless 316L Stainless-Steel Tubing
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Product Introduction
Straight Seamless 316L Stainless-Steel Tubing
316L: 316L has a wide range of applications in the chemical industry because of its excellent corrosion resistance, 316L is also a derivative of 18-8 austenitic stainless steel, which has 2 ~ 3% Mo element added. On the basis of 316L, many steel grades are also derived, such as 316Ti after adding a small amount of Ti, 316N after adding a small amount of N, and 317L is derived from increasing Ni and Mo content.
SS 316L Welded Tube Chemical Composition
Grade | Carbon | Sulfur | Manganese | Phosphorus | Nickel | Silicon | Molybdenum | Chromium | |
316L | Minimum | 10.0 | 2.0-3.0 | 16.0 | |||||
Maximum | 0.035 | 0.030 | 2.0 | 0.045 | 14.0 | 0.75 | 18.0 |
Mechanical Properties of 316L Schedule 40 stainless steel Tube
Grade | Tensile Properties (MPa) min | Elongational | Yield Properties 0.2% Proof (MPa) min | Hardness | |
Brinell (HB) max | Rockwell B (HR B) max | ||||
316L | 485 | 40 | 170 | 217 | 95 |
AISI 316L Schedule 10 Tube Equivalent
Standards | WERKSTOFF NR. | Japanese Industrial Standards | AFNOR | Unified Numbering System | GOST | British Standards | European Standards |
SS 316L | 1.4404 / 1.4435 | SUS 316L | Z3CND17‐11‐02 / Z3CND18‐14‐03 | S31603 | 03Ch17N14M3 / 03Ch17N14M2 | 316S11 / 316S13 | X2CrNiMo17-12-2 / X2CrNiMo18-14-3 |
UNS S31603 Seamless Tubing Physical Properties
Grade | Density | Modulus (GPa) | Electrical Resistivity (n.m) | Mean Coefficient of Thermal Expansion (m/m/0C) | Thermal Conductivity (W/m.K) | Specific Heat 0-1000C (J/kg.K) | |||
0-3150C | 0-1000C | 0-5380C | at 5000C | at 1000C | |||||
316L | 8000 | 193 | 740 | 16.2 | 15.9 | 17.5 | 21.5 | 16.3 | 500 |
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