What steel is used for rail?
Jan 22, 2026
A steel rail is a precision-engineered, load-bearing metal component that serves as the interface between rolling wheels and the track foundation. Its profile, metallurgical composition, and surface hardness are optimized to resist wear, fatigue, and deformation while maintaining precise alignment over long-term service. Steel rails are essential for railway lines, industrial tracks, and crane runways, providing both support and guidance for moving vehicles.

What steel is used for rail?
Rail steel is primarily high-carbon steel, often with added manganese, chromium, or other alloys, chosen for extreme hardness, wear resistance, and toughness to withstand heavy, repetitive loads, with specific grades like R260 and R350HT being common, sometimes further enhanced by head hardening for severe service. Manganese steel is particularly favored for its ability to work-harden, becoming extremely durable under traffic.
Common Rail Steel Grades Worldwide:

| Grade |
Standard / Region |
Typical Composition (wt%) | Key Features & Applications |
| R260 | EN 13674-1 (Europe) | C: 0.67–0.80, Mn: 0.90–1.20, Si: ≤0.50 | Base-grade rail; cold-rolled; widely used on medium-traffic lines. Good weldability and cost efficiency. |
| R350HT | EN 13674-1 (Europe) | C: 0.75–0.85, Mn: 0.80–1.20, Cr: 0.20–0.50 | Heat-treated (online/offline); UTS ≥1100 MPa; 30–50% longer life than R260. Standard for high-speed (TGV, ICE) and heavy-haul lines. |
| Grade 260 | AREMA (North America) | C: ~0.77, Mn: ~1.0–1.2, Si: ~0.2 | Equivalent to R260; used with rail sections like 115RE, 136RE. Common on Class I freight networks. |
| Grade 350 | AREMA + Mill Specs (USA/Canada) | C: 0.78–0.83, Mn: 0.90–1.20, Cr: 0.2–0.6, + V/Nb (microalloyed) | TMCP or heat-treated; UTS ~1180–1280 MPa. For demanding curves, heavy axle loads (>33 ton), and high-tonnage corridors. |
| BH Rail (Bainitic) | JIS E 1101 (Japan), adopted in EU/India | C: 0.65–0.80, Mn: 1.0–1.4, Cr/Mo/Ni (optional, mill-specific) | Bainitic microstructure; high strength (UTS ~1250–1350 MPa) + superior fracture toughness. Used on Shinkansen curves and high-wear segments. |
| U71Mn | GB/T 2585 (China) | C: 0.65–0.77, Mn: 1.10–1.40, Si: 0.15–0.35 | Work-hardening carbon-manganese rail; standard for 50kg/m, 60kg/m rails on Chinese mainlines. Comparable to R260/R350 in performance. |
| U75V | GB/T 2585 (China) | C: 0.67–0.77, Mn: 0.70–1.00, V: 0.04–0.12 | Vanadium-microalloyed; higher strength & fatigue resistance than U71Mn. For high-speed (e.g., Beijing–Shanghai HSR) and heavy-haul lines. |
Steel Rail Types
The type of rail is classified by kilograms per meter of rail length. For example, steel rails used in China's railways are 75kg/m, 60kg/m, 50kg/m, 43kg/m and 38kg/m.
- Classified by Application: GNEE RAIL supplies crane rail( QU120,QU100,QU80,QU70), heavy rail( 38, 43, 50, 60, 75kg) and light rail( 9,12,15,22,30kg/m).

| Classification | Height(mm) | Head (mm) | Bottom (mm) | Thick(mm) | Weight (kg/m) | |
| Light Rail | 8 KG/M | 65 | 25 | 54 | 7 | 8.42 |
| 9 KG/M | 63.5 | 32.1 | 63.5 | 5.9 | 8.94 | |
| 12 KG/M | 69.85 | 38.1 | 69.85 | 7.54 | 12.2 | |
| 15 KG/M | 79.37 | 42.86 | 79.37 | 8.33 | 15.2 | |
| 18 KG/M | 80 | 40 | 80 | 10 | 18.06 | |
| 22 KG/M | 93.66 | 50.8 | 93.66 | 10.72 | 22.3 | |
| 24 KG/M | 107 | 51 | 90 | 10.9 | 24.46 | |
| 30 KG/M | 107.95 | 60.33 | 107.95 | 12.3 | 30.1 | |
| Heavy Rail | 38 KG/M | 134 | 68 | 114 | 13 | 38.733 |
| 43 KG/M | 140 | 70 | 114 | 14.5 | 44.653 | |
| 45 KG/M | 145 | 67 | 126 | 14.5 | 45.546 | |
| 50 KG/M | 152 | 70 | 132 | 15.5 | 51.514 | |
| 60 KG/M | 176 | 73 | 150 | 16.5 | 60.64 | |
| Crane Rail | QU 70 | 120 | 70 | 120 | 28 | 52.8 |
| QU 80 | 130 | 80 | 130 | 32 | 63.69 | |
| QU 100 | 150 | 100 | 150 | 38 | 88.96 | |
| QU 120 | 170 | 120 | 170 | 44 | 118.1 | |
- Stee rail in foreign standards: British Standard: BS series (90A, 80A, 75A, 75R, 60A, etc.) German standard: DIN series crane rails. International Railway Union: UIC series. American Standard: ASCE series. Japanese standard: JIS series.
American Standard Steel Rail
| ASTM standard, AREMA standard | ||||||
|---|---|---|---|---|---|---|
| Size | Dimension(mm) | Weight (kg/m) |
Length(m) | |||
| Head | Height | Foot | Thickness | |||
| ASCE 25 | 38.1 | 69.85 | 69.85 | 7.54 | 12.4 | 6-12 |
| ASCE 30 | 42.86 | 79.38 | 79.38 | 8.33 | 14.88 | |
| ASCE 40 | 47.62 | 88.9 | 88.9 | 9.92 | 19.84 | |
| ASCE 60 | 60.32 | 107.95 | 107.95 | 12.3 | 29.76 | |
| ASCE 75 | 62.71 | 122.24 | 122.24 | 13.49 | 37.2 | 12-25 |
| ASCE 85 | 65.09 | 131.76 | 131.76 | 14.29 | 42.17 | |
| ASCE 90 | 69.09 | 130.18 | 142.88 | 14.29 | 44.65 | |
| ASCE 115 | 69.06 | 139.7 | 168.28 | 15.88 | 56.9 | |
| ASCE 136 | 74.61 | 152.4 | 185.74 | 17.46 | 67.41 | |
| ASCE 175 | 109.86 | 152.4 | 152.4 | 38.1 | 86.8 | |
BS11:1985 Standard Steel Rail
| Standard: BS11:1985 | ||||||
|---|---|---|---|---|---|---|
| Size | Dimension(mm) | Weight (kg/m) |
Length(m) | |||
| Head | Height | Bottom | Thickness | |||
| 50 O | 52.39 | 100.01 | 100.01 | 10.32 | 24.833 | 6-18 |
| 60 A | 57.15 | 114.3 | 109.54 | 11.11 | 30.618 | |
| 75 A | 61.91 | 128.59 | 114.3 | 12.7 | 37.455 | 8-25 |
| 75 R | 61.91 | 128.59 | 122.24 | 13.1 | 37.041 | |
| 80 A | 63.5 | 133.35 | 117.47 | 13.1 | 39.761 | |
| 80 R | 63.5 | 133.35 | 127 | 13.49 | 39.674 | |
| 90 A | 66.67 | 142.88 | 127 | 13.89 | 45.099 | |
| 100 A | 69.85 | 152.4 | 133.35 | 15.08 | 50.182 | |
| 113 A | 69.85 | 158.75 | 139.7 | 20 | 56.398 | |
UIC 860 Standard Steel Rail
| Standard: UIC860 | ||||||
|---|---|---|---|---|---|---|
| Size | Dimension(mm) | Weight (kg/m) |
Length(m) | |||
| Head | Height | Bottom | Thickness | |||
| UIC50 | 70 | 152 | 125 | 15 | 50.46 | 12-25 |
| UIC54 | 70 | 159 | 140 | 16 | 54.43 | |
| UIC60 | 74.3 | 172 | 150 | 16.5 | 60.21 | |
DIN 13674-1-2003 Standard Steel Rail
| Standard:DIN 536 | ||||||
|---|---|---|---|---|---|---|
| Size | Dimension(mm) | Weight (kg/m) |
Length(m) | |||
| Head | Height | Bottom | Thickness | |||
| A55 | 55 | 65 | 150 | 31 | 31.8 | 10-12 |
| A55 | 65 | 75 | 175 | 38 | 43.1 | |
| A75 | 75 | 85 | 200 | 45 | 56.2 | |
| A100 | 100 | 95 | 200 | 60 | 74.3 | |
| A120 | 120 | 105 | 200 | 72 | 100 | |
What are the differences between steel rails of different standards?
Differences between steel rail standards involve weight (kg/m), steel composition (carbon/alloy content), heat treatment, and profile shape, all tailored for specific applications like heavy freight (heavier, stronger rails) vs. light transit (lighter rails) or high-speed lines (head-hardened for wear resistance), ensuring optimal strength, hardness, and fatigue life for different axle loads, speeds, and traffic volumes, with examples like BS 113A for heavy duty or JIS 50N for general use.

Weight (Section Weight): Measured in kilograms per meter (e.g., 50kg/m, 60kg/m, 75kg/m).
Heavy Rails (>43kg): For mainlines, high-speed, heavy freight (e.g., 60kg, 75kg).
Light Rails (<43kg): For branch lines, industrial yards, light rail (e.g., 24kg, 38kg).
Steel Grade & Composition:
- Carbon Steel: Standard, cost-effective, relies on carbon and manganese for strength.
- Alloy Steel: Adds elements like vanadium, chromium for superior strength, toughness, and wear.
- Heat-Treated Steel: Surface-hardened (e.g., Head Hardened or HH) for extreme wear resistance, common in high-tonnage areas or curves (e.g., R350HT, SS, HH grades).
- Heat Treatment: Affects microstructure for enhanced properties.
- Hot-Rolled: Standard finish.
- Heat-Treated: Refined pearlite/bainitic structures, significantly harder and tougher.
- Profile Design: The shape (cross-section) varies for stability and load distribution, with I-shapes being common for general use.
- Standards & Applications: Different countries/regions have standards (e.g., UIC, BS, JIS), dictating specifications for specific uses like heavy haul (AREMA, 75kg), high speed (60kg+), or crane rails (CR73, CR100).
As a professional rail fastener supplier, GNEE RAIL can provide different standard steel rail such as GB,American, BS, UIC, DIN, JIS, Australian and South Africa which used in railway lines, cranes and coal mining.







