Yield
S235 ~235 MPa; AHSS 600–1500+ MPa depending on dual-phase / martensitic grade.
鋼 · 建築・船・レール・工具の鉄–炭素。何度でも溶かして使える。
Numbers below are bands used by working engineers, not live quotes. Tensile note: grade-dependent.
Fire performance in this atlas is editorial. Real projects need the assembly report.
S235 ~235 MPa; AHSS 600–1500+ MPa depending on dual-phase / martensitic grade.
~200 GPa — stiffness barely changes with carbon; geometry does the rest.
Charpy values collapse below the ductile-to-brittle transition in BCC grades.
Welds and inclusions dominate life; polished laboratory bars overstate real joints.
Annealed mild steel ~120 HV; quenched tool steels exceed 60 HRC.
~45–55 W/m·K for carbon steel — a heat path, not a blanket.
~12 × 10⁻⁶ /K; fire design must allow for that growth.
Yield falls sharply above ~400–500 °C; unprotected steel buildings need fireproofing.
Solidus depends on carbon; cast irons sit lower than low-carbon plate.
~490 J/kg·K; thermal mass matters in furnace walls and cookware.
~0.15 µΩ·m for mild steel — worse than copper, used where strength wins.
Ferritic grades are ferromagnetic; austenitic stainless is not.
Silicon steels (electrical steel) cut transformer core losses.
Bare structural steel is A1 (non-combustible) but loses strength in fire.
Intumescent paint, boards or spray mineral wool buy time to R30–R120.
Standard fire curves size protection thickness, not the steel chemistry.
Carbon steel tools can spark; some plants specify copper-beryllium or aluminium bronze instead.
If a salesperson quotes a single “safety score”, ask which standard, which thickness, which year.