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1.4541, DIN X6CrNiTi18-10, AISI 321
Production specification
Square-shape steel standard Download
Plate steel standard Download
Billet standard Download
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wire standard Download
tube standard Download
pipe standard Download
Forging standard Download
casting standard Download
sheet standard Download
round bar standard Download
coil standard Download
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1.4541, DIN X6CrNiTi18-10, AISI 321
Designation by Standards
Brand Name | LH No. | Mat. No. | DIN | EN | AISI |
PK11SP | 914 | 1.4541 | X6CrNiTi18-10 | X6CrNiTi1810 | 321 |
Chemical Composition (in weight %)
C | Si | Mn | Cr | Mo | Ni | V | W | Others |
max. 0.08 | max. 1.00 | max. 2.00 | 18.00 | - | 10.50 | - | - | min. Ti=5 x C x 0.7 |
Description
The key feature of 321 stainless is its resistance to intergranular corrosion. It employs titanium as a stabilizing element against chromium carbide formation. This alloy also exhibits strength characteristics superior to those of 304 stainless.
Applications
Jet engine parts, furnace heat treated parts, expansion joints, turbo superchargers, oil refiners, exhaust manifolds and high temperature chemical production equipment.
Physical properties (avarage values) at ambient temperature
Modulus of elasticity [103 x N/mm2]: 203, 186 (200oC), 172(400oC)
Density [g/cm3]: 7.9
Thermal conductivity [W/m.K]: 14.6
Electric resistivity [Ohm mm2/m]: 0.73
Specific heat capacity[J/g.K]: 0.502
Coefficient of Linear Thermal Expansion 10-6 oC-1
20-100oC | 20-200oC | 20-300oC | 20-400oC | 20-500oC |
16.0 | 17.0 | 17.0 | 18.0 | 18.0 |
Hardening
Harden from a temperature of 1020-1100oC followed by water or air quenching. Structure is austenite with small ferrite component.
Mechanical properties in solution-annealed condition and reistance to intercrystalline corrosion
Hardness: 130-190 HB
0.2 % proof stress: 190 N/mm2
1.0 % proof stress: 225 N/mm2
Tensile strength: 500-700 N/mm2
Elongation: 40% (for d<=160, longit.)
Resistance to interystalline corrosion: yes (in as delivered condition), yes (in sensitised condition)
Note: Sensitisation treatment for 15 min at 700oC with subsequent cooling in air.
Mechanical Properties At Elevated Temperatures
Quenched Condition
Temperature | 50oC | 100oC | 150oC | 200oC | 250oC | 300oC | 350oC | 400oC |
0.2 % proof stress in N/mm2 | 190 | 176 | 167 | 157 | 147 | 136 | 130 | 124 |
Forging
Hot forming temperature: 1150-850oC.
Machinability
Excellent speeds and feeds are capable with this material. The addition of sulfur causes a very brittle chip. Many companies now offer premium machinability grades, such as CarTech with their Project 70 and 7000 series.
Corrosion Resistance
Resistant to a variety of organic and inorganic chemicals, fresh water and atmospheric corrosion.
Welding
Although not recommended, welding may be performed if low temperatures are employed. Recommended filler metal is AWS E/ER312. At high temperature, the sulfur in 303 tends to precipitate at the weld boundary resulting in weak and brittle joints.
Cold working
Minor deformation is possible with this alloy, although it is not its strong point. Type 303 Se is superior in this aspect.
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