🧱 Conduction Heat Transfer & Materials

Thermal Conductivity Converter

Convert Fourier conduction thermal conductivity ($k$) between metric ($\text{W/(m}\cdot\text{K)}$), imperial ($\text{BTU/(hr}\cdot\text{ft}\cdot^\circ\text{F)}$), and building insulation $k$-factor units.

🥉 Copper (401 W/m·K) 🔩 Aluminum (237 W/m·K) ⚙️ Steel (50 W/m·K) 🧶 Insulation (0.04 W/m·K) 💎 Diamond (2,200 W/m·K)
Input Conductivity
Standard Imperial (BTU/hr·ft·°F)
231.69 BTU/(hr·ft·°F)
401.0 W/(m·K) • k-factor: 2,780.3 BTU·in/(hr·ft²·°F)
W / (m·K)
401.0 W/m·K
kcal / (hr·m·°C)
344.8
cal / (s·cm·°C)
0.9579
💡 Fourier's Law of Conduction:
$$q = -k \cdot A \cdot \frac{dT}{dx} \implies 1\text{ W/(m}\cdot\text{K)} = 0.5778\text{ BTU/(hr}\cdot\text{ft}\cdot^\circ\text{F)}$$

Understanding Thermal Conductivity

Thermal conductivity ($k$) is the intrinsic material property indicating its ability to conduct heat: