X55CrMo14 knife steel

Quick answer

X55CrMo14 is a stainless kitchen knife steel running about 55 to 56 HRC. Edge retention is low, toughness very high, corrosion resistance very high and ease of sharpening very high. It is found in Victorinox Fibrox and Swiss Classic.

The Rockwell hardness figures are published by the manufacturers. The one to five scores are relative rankings rather than measurements.

Kitchen knife steels compared
SteelHardnessRetentionToughnessCorrosionSharpening
X50CrMoV1556 to 58 HRC3/55/55/55/5
X55CrMo1455 to 56 HRC2/55/55/55/5
1.411655 to 56 HRC2/55/55/55/5
440C58 to 60 HRC3/53/55/54/5
AUS-857 to 58 HRC3/54/54/55/5
AUS-1058 to 60 HRC3/54/54/54/5
VG-1060 to 61 HRC4/53/55/53/5
VG-MAX60 to 61 HRC4/53/55/53/5
Ginsan (Silver 3)60 to 61 HRC4/54/55/54/5
SG2 / R2 powder steel63 to 64 HRC5/52/55/52/5
ZDP-18964 to 66 HRC5/51/54/51/5
Shirogami 2 (White 2)61 to 63 HRC4/53/51/55/5
Aogami 2 (Blue 2)61 to 63 HRC5/53/51/54/5
Sandvik 14C28N58 to 60 HRC3/54/55/54/5
What this usually means buying

Victorinox 8 Inch Swiss Classic Chef's Knife - Non-Slip Stainless Steel

8 in
$41.32Check pricePrices change often

What is X55CrMo14?

X55CrMo14 is a Swiss kitchen knife steel hardened to roughly 55 to 56 on the Rockwell C scale. Softer than most kitchen steel, which is exactly why a professional kitchen tolerates it: it dulls fairly quickly and comes back in seconds on a steel, and it survives abuse that would chip a harder blade.

Rockwell C hardness is measured by pressing a diamond cone into the steel under a set load and reading how deep it goes. Kitchen knives span roughly 55 to 66 HRC. The figure measures resistance to deformation, which correlates strongly with how long an edge stays aligned, and it says nothing directly about toughness or corrosion resistance.

What the hardness actually buys you

At 55 to 56 HRC this steel supports a robust edge that gives up some longevity in exchange for being almost impossible to chip. That is the central trade in kitchen knives, and it is metallurgy rather than marketing: a harder edge is thinner and more brittle at its apex, so it survives longer in clean cutting and fails by chipping rather than rolling when it meets something hard.

At this hardness the edge rolls rather than chips, which is a far friendlier failure mode: a honing rod straightens it in seconds and no metal is lost.

Sharpening and maintenance

Ease of sharpening scores 5 out of 5 here. This steel comes back quickly on almost any abrasive, which is a genuine advantage for anyone who sharpens infrequently or is still learning.

Corrosion resistance scores 5 out of 5, so ordinary kitchen use presents no problem. Washing and drying by hand is still the rule, and no kitchen knife belongs in a dishwasher regardless of its steel.

Knives and sharpening gear

Common questions

How hard is X55CrMo14?

About 55 to 56 on the Rockwell C scale, as published by the makers who use it. For context, kitchen knives run roughly 55 to 66 HRC overall, so this sits in the softer, tougher part of the range. Hardness is measured by indentation depth under a set load.

Is X55CrMo14 a good kitchen knife steel?

It is a good choice for the right cook. Softer than most kitchen steel, which is exactly why a professional kitchen tolerates it: it dulls fairly quickly and comes back in seconds on a steel, and it survives abuse that would chip a harder blade. Whether it suits you depends far more on how you maintain knives than on the alloy itself: it rewards someone who wants a knife that comes back quickly with minimal fuss.

Does X55CrMo14 rust?

It is a stainless steel with a corrosion resistance score of 5 out of 5, so ordinary kitchen use will not rust it. Leaving it wet in a sink for a day or running it through a dishwasher can still pit the surface, which is why every kitchen knife should be washed and dried by hand.

How do I sharpen X55CrMo14?

A whetstone gives the best result, and this steel is soft enough that a honing rod between sharpenings will keep it performing for a long time. It also tolerates less careful methods better than harder steels do.

Does the steel matter more than the blade shape?

Usually less. How thin the blade is behind the edge, and the angle it is ground to, decide how a knife feels in the cut far more than the alloy does. A well ground knife in ordinary steel outperforms a thick, badly ground knife in premium steel. The steel mainly determines how long that feeling lasts before sharpening.