AISI 316L yog ib qho qis - carbon austenitic stainless hlau
Mar 18, 2026
Tso lus



🧪 Chemical Composition
| Element | Kev sib xyaw (%) |
|---|---|
| Cov pa roj carbon (C) | Tsawg dua lossis sib npaug li 0.030 |
| Manganese (Mn) | Tsawg dua lossis sib npaug li 2.00 |
| Silicon (Si) | Tsawg dua lossis sib npaug li 0.75 |
| Phosphorus (P) | Tsawg dua lossis sib npaug li 0.045 |
| Sulfur (S) | Tsawg dua lossis sib npaug li 0.030 |
| Chromium (Cr) | 16.00 - 18.00 |
| Nickel (Ni) | 10.00 - 14.00 |
| Molybdenum (hli) | 2.00 - 3.00 |
| Nitrogen (N) | Tsawg dua lossis sib npaug li 0.10 |
| Hlau (Fe) | Tshuav |
⚙️ Mechanical Properties
| Khoom | Tus nqi |
|---|---|
| Tensile zog (Rm) | 485 - 620 MPa |
| Yield zog (Rp0.2) | Ntau dua lossis sib npaug li 205 MPa |
| Elongation (A50 hli) | Ntau dua lossis sib npaug li 40% |
| Hardness (HRB) | Tsawg dua los yog sib npaug li 95 |
| Hardness (HV) | 200 - 250 |
| Impact Zog (KV) | Ntau dua lossis sib npaug rau 60 J (ntawm 20 degree) |
| Young's Modulus | 200 GPa |
| Fatigue Limit | 245 MPa (107lub voj voog) |
| Poisson tus ratio | 0.27 - 0.30 |
🔬 Lub cev muaj zog
| Khoom | Tus nqi |
|---|---|
| Qhov ntom | 8.00 g / cm³ |
| Melting Point | 1400 - 1450 degree |
| Thermal conductivity (20 degree) | 16.3 W/m·K |
| Thermal conductivity (100 degree) | 18.3 W/m·K |
| Thermal Expansion (20-100 degree) | 16.0×10-6/K |
| Thermal Expansion (20-300 degree) | 17.0×10-6/K |
| Tshwj xeeb kub muaj peev xwm | 500 J/kg · K |
| Hluav taws xob tiv thaiv (20 degree) | 0.74 µΩ·m |
| Sib nqus Permeability | 1.02 µr (Tsis yog-magnetic) |
| Curie Kub | Tsis yog-magnetic |
Xa kev nug






