EN 407:2020 Decoded

Reading the six-position heat-and-flame code, and why five X’s can still be a pass

A glove stamped with the EN 407 flame-and-shield pictogram is not automatically “heat resistant.” It’s a report card on six independent thermal tests, and a glove can legitimately wear the mark while claiming a result on only one of them — the other five sitting honestly at X.

The hook: one pictogram, six separate claims

An EHS buyer scanning a spec sheet sees the EN 407 flame icon next to a string like “X1XXXX” and reads it as one thing: this glove handles heat. It doesn’t say that. EN 407:2020 packs six unrelated thermal properties — flame spread, contact heat, convective heat, radiant heat, and two molten-metal splash tests — into one six-character code, the same label logic EN 388 uses for mechanical risk. Read it as one number and a glove built to survive a brief touch against a warm surface can get issued to someone standing at a foundry pour. The fix is the same as EN 388: read six positions, not one pictogram.

The decode: what each position actually tests

PositionPropertyMethod (normative reference)Scale
1 — Limited flame spreadAfter-flame / after-glow once a test flame is removedEN 407’s own flame- application test1–4, or X
2 — Contact heatTime before the glove’s interior rises 10°C against a hot surface (100–500°C)EN ISO 12127-1:20151–4, or X
3 — Convective heatHeat-transfer delay through the material against a gas-flame sourceEN ISO 9151:20161–4, or X
4 — Radiant heatHeat-transfer delay against an infrared radiant sourceEN ISO 6942:20021–4, or X
5 — Small splashes of molten metalNumber of molten-metal droplets needed to raise the reverse- side temperature by 40°CEN 348:19921–4, or X
6 — Large quantities of molten metalGrams of molten iron poured over the sample before a PVC backing film registers damageEN ISO 9185:20071–4, or X

EN 407 has no “0.” EN 388’s mechanical tests can report 0 — a documented fail below the Level 1 minimum. EN 407 doesn’t carry that state: every position is either rated 1–4 or marked X, meaning simply not tested or not claimed. Importing the EN 388 habit and reading an EN 407 X as “failed” is the single most common misread on this label — there is no failed state here, only claimed or not-claimed.

Level 3 and 4 on positions 2–4 have a gate. A glove can only report Level 3 or 4 for contact, convective, or radiant heat if it also clears Level 3 minimum on position 1 (limited flame spread). Miss that threshold and the maximum reportable on those three properties caps at Level 2 — regardless of the raw test result. A “2” on contact heat next to an X on flame spread isn’t underperformance; the glove may simply not have been submitted for the flame test, a valid choice outside flame-hazard tasks.

Two pictograms exist since 2020, and they can’t mix. The revision split the mark into a flame pictogram (used when flame spread is claimed at Level 1+) and a hot-contact-only pictogram (used when it isn’t) — a glove cannot carry both. Checking which pictogram is printed tells a buyer, before reading a single digit, whether any flame resistance is claimed at all.

What the 2020 revision changed

EN 407:2020 replaces the 2004 edition. Beyond the pictogram split, the revision tightened the flame-application test (a single 10second exposure with an inserted metal rod, versus the old two-exposure method), simplified the mechanical precursor to a single minimum tear-resistance value, and extended scope to domestic-market gloves (oven mitts, barbecue gloves) for the first time. A 2004-era code and a 2020 code aren’t measuring identically defined properties — treat the two editions as different documents, not different revisions of the same number.

Reading a real glove: ST-9080

STEGO’s SHELL Series ST-9080 is a clean example. Its Article Data Sheet lists EN 407:2020 — X1XXXX:

X flame spread — not claimed 1 contact heat — Level 1 (resists a 100°C surface for the required duration without a 10°C interior rise) X · X · X · X — convective heat, radiant heat, small splash, large splash — none claimed

Read correctly, this is an impact-and-cut mechanical glove with one tested, honestly documented heat property — not a welding or foundry glove borrowing a heat pictogram it hasn’t earned. Worth a second look on the same sheet: STEGO also lists an ASTM F1060 conductive-heat figure next to the EN 407 line — a separate North American standard with its own scale. The two numbers sit side by side; they are not the same measurement, and reading one as the other will misquote the glove’s actual heat rating.

Practical takeaways for an EHS selection review

  1. Read all six positions before deciding a glove is “heat resistant.” One claimed property does not imply the other five.
  2. Never read an X as a fail. EN 407 has no 0 — X means not tested or not claimed, full stop.
  3. Check which pictogram is printed before reading the digits. Flame vs. hot-contact-only tells you the claim’s basic shape in one glance.
  4. Don’t assume a Level 2 on positions 2–4 signals a weak glove. It may simply reflect that flame spread wasn’t tested — a valid choice outside flame-hazard tasks.
  5. Match every position to the actual exposure, and don’t conflate a nearby ASTM or other national-standard number with the EN 407 figure on the same sheet.

Where STEGO fits

Wherever a STEGO hand-protection glove carries a thermal rating, its Article Data Sheet prints the full six-position EN 407:2020 marking exactly as tested — including the X’s, with nothing rounded up to look more protective. The SHELL Series ST-9080 marking above is typical of how STEGO documents thermal performance: a single Level 1 contact-heat rating standing on its own, not dressed up as broader heat protection it never claimed.

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