Enclosureconcept
Insulation types compared: R-value, moisture, fire, and barrier behavior
One-line orientation
Choose insulation by more than R-value. Also consider moisture tolerance, fire behavior, and whether the insulation can help control air or vapor. For example, closed-cell foam can qualify as a vapor retarder, while open-cell foam generally does not.
Key points
- R-value per inch measures heat-flow resistance per inch of thickness; the foams generally lead, the fibers trail — but R/inch alone never decides the choice.
- Foam plastics are combustible and generally need a code-compliant thermal or ignition barrier.
- Barrier behavior splits the field: rigid foams and spray foams can contribute to the air barrier only when joints, penetrations, and continuity are sealed. Vapor-control behavior depends on product, facer, and thickness; closed-cell spray foam and faced rigid foams can qualify as vapor retarders, while open-cell spray foam, fiberglass, and mineral wool do not act as vapor barriers by themselves.
- Moisture tolerance: XPS, closed-cell foam, and mineral wool tolerate water best; EPS, open-cell foam, and fiberglass are weaker when wet (wet fiberglass loses R-value).
- Polyiso is the highest-R rigid foam but loses R-value in cold and is unsuitable below grade.
- Mineral wool is the fire/sound specialist — non-combustible, retains performance when wet, used in fire-rated and acoustic assemblies; fiberglass is the low-cost general batt.
R-value per inch ranks them — but it does not decide the choice
Sorted by R/inch, highest first — yet moisture, fire and barrier status scatter independently down the columns.
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- yes
- conditional
- no
- no — and the tested trap: open-cell foam is an air barrier but not a vapor barrier
Trap — open-cell foam is an air barrier, but unlike closed-cell it is not a vapor barrier (amber ring).
conditional = if continuous / sealed, or thickness- / facer-dependent. * Polyiso: rated R falls in the cold — don’t assume it below grade or in a cold-climate exterior. Fiberglass and mineral wool are both non-combustible, but mineral wool is the standout: it withstands very high heat and is the choice for fire-rated assemblies.
Confusions / comparison
| Insulation | Approx R / inch | Moisture tolerance | Fire behavior | Air barrier? | Vapor barrier? |
|---|---|---|---|---|---|
| EPS (expanded polystyrene) | 3.6 – 4.2 | Moderate; absorbs water over time | Combustible; barrier/assembly required by code | If continuous/sealed | Product/thickness dependent |
| XPS (extruded polystyrene) | 4.5 – 5.0 | High; resists water | Combustible; barrier/assembly required by code | If continuous/sealed | Product/thickness dependent |
| Polyiso (polyisocyanurate) | 5.6 – 6.5 | Low; degrades with prolonged moisture | Combustible; chars, somewhat better than EPS/XPS | If continuous/sealed | Facer/thickness dependent |
| Closed-cell spray foam | 6.0 – 7.0 | Excellent; watertight seal | Combustible; needs fire/ignition barrier | Yes, if continuous | Thickness dependent |
| Open-cell spray foam | 3.5 – 3.8 | Poor; absorbs moisture | Combustible; needs fire/ignition barrier | Yes | No |
| Fiberglass batt | 2.9 – 3.8 | Moderate; loses R-value wet | Non-combustible | No | No |
| Mineral wool (rockwool) | about 3.2–4.3 | Excellent; performs when wet | Non-combustible; high-heat resistant | No | No |
Related
→ The four enclosure control layers (this topic): where thermal control sits in the stack · Vapor retarders: perm classes and placement (this topic): when an insulation’s vapor-barrier behavior helps or hurts · Window and door performance (this topic): U-factor as the glazed-opening analog of R-value.
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