AS4/3501-6 carbon/epoxy UD lamina vs Kevlar 49/epoxy UD lamina

Every value below is a typical room-temperature figure with its source, test method and conditions — the same dataset that drives the calculators.

AS4/3501-6 carbon/epoxy UD lamina in fullKevlar 49/epoxy UD lamina in full← All materials
PropertyAS4/3501-6 carbon/epoxy UD laminaKevlar 49/epoxy UD laminaDifference
Density1.6 g/cm³1.38 g/cm³AS4/3501-6 carbon/epoxy UD lamina — 16% higher
E₁ (longitudinal)142 GPa80 GPaAS4/3501-6 carbon/epoxy UD lamina — 77% higher
E₂ (transverse)10.3 GPa5.5 GPaAS4/3501-6 carbon/epoxy UD lamina — 87% higher
G₁₂ (in-plane shear)7.2 GPa2.2 GPaAS4/3501-6 carbon/epoxy UD lamina — 3.3× higher
ν₁₂ (major Poisson)0.27 0.34 Kevlar 49/epoxy UD lamina — 26% higher
Xt (long. tension)2280 MPa1400 MPaAS4/3501-6 carbon/epoxy UD lamina — 63% higher
Xc (long. compression)1725 MPa235 MPaAS4/3501-6 carbon/epoxy UD lamina — 7.3× higher
Yt (transv. tension)57 MPa12 MPaAS4/3501-6 carbon/epoxy UD lamina — 4.8× higher
Yc (transv. compression)228 MPa53 MPaAS4/3501-6 carbon/epoxy UD lamina — 4.3× higher
S (in-plane shear)76 MPa34 MPaAS4/3501-6 carbon/epoxy UD lamina — 2.2× higher
  • Daniel & Ishai, Engineering Mechanics of Composite Materials, 2nd ed.

Typical room-temperature values for learning and preliminary design; grades vary widely and a supplier datasheet always overrides a textbook figure. Confirm against the datasheet before design work.