E-glass/epoxy UD lamina vs T300/5208 carbon/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.

E-glass/epoxy UD lamina in fullT300/5208 carbon/epoxy UD lamina in full← All materials
PropertyE-glass/epoxy UD laminaT300/5208 carbon/epoxy UD laminaDifference
Density2.1 g/cm³1.6 g/cm³E-glass/epoxy UD lamina — 31% higher
E₁ (longitudinal)39 GPa181 GPaT300/5208 carbon/epoxy UD lamina — 4.6× higher
E₂ (transverse)8.6 GPa10.3 GPaT300/5208 carbon/epoxy UD lamina — 20% higher
G₁₂ (in-plane shear)3.8 GPa7.17 GPaT300/5208 carbon/epoxy UD lamina — 89% higher
ν₁₂ (major Poisson)0.28 0.28 identical
Xt (long. tension)1080 MPa1500 MPaT300/5208 carbon/epoxy UD lamina — 39% higher
Xc (long. compression)620 MPa1500 MPaT300/5208 carbon/epoxy UD lamina — 2.4× higher
Yt (transv. tension)39 MPa40 MPaT300/5208 carbon/epoxy UD lamina — 3% higher
Yc (transv. compression)128 MPa246 MPaT300/5208 carbon/epoxy UD lamina — 92% higher
S (in-plane shear)89 MPa68 MPaE-glass/epoxy UD lamina — 31% higher
  • Daniel & Ishai, Engineering Mechanics of Composite Materials, 2nd ed.
  • Tsai & Hahn, Introduction to Composite Materials, 1980

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.