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GB · China · 1 designation

30Mn2MoW

30Mn2MoW is a grade designated under GB. Its recorded composition includes C 0.27–0.34%, Si 0.17–0.37%, Mn 1.7–2%, Mo 0.4–0.5% and W 0.6–1%. No cross-standard equivalents are recorded for this grade yet.

Chemical composition

10 elements on file · weight %

What this alloy is

Iron — the balance, never listed by a standard — 95.4 %Mn — 1.9 %W — 0.8 %Mo — 0.5 %Traces & impurities · 1.5 %

Logarithmic scale, 0.01 % to 100 % — every value here compares directly, decade by decade.

Element% by weight
0.27–0.34
0.17–0.37
1.7–2
≤ 0.035
≤ 0.035
≤ 0.3
0.4–0.5
≤ 0.3
0.6–1
≤ 0.3
CarbonSiliconManganesePhosphorusSulfurChromiumMolybdenumNickelTungstenCopper
0.01 %0.1 %1 %10 %100 %

The scale is logarithmic, not the element’s raw share of the alloy — the only honest way to fit 0.01 % and 100 % in one picture, and it means every value here can be compared with every other.

ElementAs publishedsource text, verbatimMin% by weightMax% by weightBound
C0.27-0.340.2700.340Range
Si0.17-0.370.1700.370Range
P≤0.0350.035Max
S≤0.0350.035Max
Cr≤0.30.300Max
Mn1.7-21.7002.000Range
Ni≤0.30.300Max
Cu≤0.30.300Max
Mo0.4-0.50.4000.500Range
W0.6-10.6001.000Range

The published column is the source string byte-for-byte, decimal comma and all; Min and Max are the parsed bounds. Elements not listed have no value on file — they are omitted, never inferred.

Predicted transformation temperatures

computed from composition · °C
Predicted Ae3776°C
Predicted Ae1706°C
Predicted Acm547°C
Predicted Bs512°C

These four temperatures are a CALCULATION from this grade's own composition, using the published Li, Niebuhr, Meekisho & Atteridge (1998) model — never a measurement, and computed from the UPPER BOUND of each element's specified range, not a mid-range figure. Where this grade also has a measured transformation point (Ac1, Ac3, Ar1, Ar3) on file, it is shown separately, in Physical & mechanical properties, and is never replaced by the predicted figures here — Ae (predicted, equilibrium) and Ac/Ar (measured, on heating or cooling) are different physical quantities and can differ by tens of degrees; a mismatch between the two is not an error in either.

Physical & mechanical properties

An absent property means we hold no value for it — it is left out rather than estimated, interpolated from a neighbouring grade, or filled from a handbook. It does not mean the property is undefined for the material.

Looking for this grade under another name?

Search the catalogue by designation, material number or composition — every name on this page is itself a way in.