T305 Stainless Steel

T305 Stainless Steel

The typical chemical composition of T305 stainless steel is as follows: Carbon: 0.12 max Manganese: 2.00 max Silicon: 1.00 max Chromium: 17.00-19.00 Nickel: 10.00 -13.00 Molybdenum: 0.75 max Phosphorus: 0.040 Sulfur: 0.030 max Copper: 0.75 max Iron: Balance Physical properties of T305 stainless...
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The typical chemical composition of T305 stainless steel is as follows:

Carbon: 0.12 max
Manganese: 2.00 max
Silicon: 1.00 max
Chromium: 17.00-19.00
Nickel: 10.00 -13.00
Molybdenum: 0.75 max
Phosphorus: 0.040
Sulfur: 0.030 max
Copper: 0.75 max
Iron: Balance


Physical properties of T305 stainless steel include:

Density: 0.29 lbs/in3 7.99 g/cm3,

Electrical Resistivity: microhm-in (microhm-cm): 68 °F (20 °C): 28.4 (74.0),

Specific Heat: BTU/lb/°F (kJ/kg•K): 32 – 212 °F (0 – 100 °C): 0.12 (0.50),

Modulus of Elasticity: ksi (MPa) 28 x 103 (193 x 103) in tension, Magnetic Permeability, H = 200

Oersteds: Annealed < 1.02,

Melting Range: 2550 – 2650 ° F (1399 – 1454 °C).


What Exactly is Stainless Steel?

Stainless steel is an Iron-based alloy containing a minimum of 11% Chromium, which is the property that resists rust, making it stain less than other metals.


Each type of stainless steel has a set of unique composition and unique qualities. The chemical composition of the stainless steel determines properties including hardness, strength, whether it is magnetic or not, and how easy the steel is to work with.


Stainless steel can be referred to in the following ways:

Ferritic – magnetic, low-carbon steels with Chromium like 430;

Austenitic – non-magnetic Chromium-Nickel steels like 201, 304, & 316; and

Martensitic – rarely-used, magnetic low-carbon steels with low levels of Nickel and 12% Chromium.


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