Chemical Composition
|
Element |
Composition Range |
|
Carbon (C) |
0.24% - 0.32% |
|
Silicon (Si) |
0.17% - 0.37% |
|
Manganese (Mn) |
1.20% - 1.60% |
|
Titanium (Ti) |
0.05% - 0.12% |
|
Boron (B) |
0.0005% - 0.0035% |
|
Molybdenum (Mo) |
0.20% - 0.30% |
|
Chromium (Cr) |
0.15% - 0.35% |
Comparison to Other Wear-Resistant Steels
|
Feature |
27MnTiBM (Inferred) |
MN13 |
NM400 |
Hardox® 500 |
|
Hardness |
~400–500 HBW |
≥200 HBW |
370–430 HBW |
500 HBW |
|
Key Alloys |
Mn, Ti, B, Mo |
11–14% Mn |
Cr, Mo |
Proprietary alloy |
|
Strengths |
Impact + wear |
Work hardening |
Cost-effective |
Extreme abrasion |
Advantages of 27MnTiBM Wear Resistant Plate
|
Advantage |
|
High Wear Resistance |
|
Good Impact Resistance |
|
Excellent Weldability |
|
High Temperature Resistance |
|
Good Corrosion Resistance |
|
Cost - Effectiveness |
Main Applications
|
Mining Industry |
|
Construction Machinery |
|
Coal and Material Handling |
|
Transportation and Heavy Vehicles |
|
Agriculture and Earthmoving |
Common Sizes
|
Dimension |
Common Sizes (mm) |
|
Thickness |
6, 8, 10, 12, 15, 20, 25, 30, 40, 50 |
|
Width |
1000, 1250, 1500, 1800, 2000, 2200, 2500, 3000 |
|
Length |
2000, 2500, 3000, 4000, 5000, 6000, 8000, 10000, 12000 |
Packaging of 27MnTiBM Wear Resistant Plate



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