High Strength & High Tensile Steel Sheets & Plates
High Strength & High Tensile Steel Sheets and Plates are a reliable choice for various industrial applications. These products are known for their exceptional strength and durability, making them an ideal choice for projects that require high load-bearing capacity and resistance to wear and tear.
With many different varieties available, these steel sheets and plates can be used in a range of applications. Whether you're looking for a material for construction purposes, machinery manufacturing, or any other industrial application, high strength and high tensile steel sheets and plates have you covered.
One major benefit of these materials is that they offer superior strength-to-weight ratios, which means that they are lightweight yet strong. This makes them particularly useful in situations where weight is a concern, such as in aerospace and automotive applications.
Additionally, steel sheets and plates that are high strength and high tensile are capable of maintaining their strength and shape even under extreme conditions. They are effective against corrosion, abrasion, and other types of wear and tear, making them suitable for use in harsh environments.
Chemical composition % of the ladle analysis of grade S460ML and Standards
Grade : | S460ML |
Number: | 1.8838 |
Standard: | EN 10025 - 4 : 2004 Technical delivery conditions for thermomechanical rolled weldable fine grain structural steels. |
Classification: | Thermomechanical rolled weldable fine grain structural steels |
Chemical composition % of the ladle analysis of grade S460ML (1.8838)
Nominal thickness =< 16(mm) CEV max = 0.45 Nominal thickness from 16 to 40 (mm) CEV max = 0.46 Nominal thickness from 40 to 63 (mm) CEV max = 0.47 For long products the P and S content can be 0.005% higher For railway application a maximum S content of 0.01% may be agreed at the time of enquiry and order In sufficient other N-binding elements are present the minimum total Al content does not applay Cu content above 0.45% may cause hot shortness during hot forming For long products a maximum C content of 0.20% applies |
C | Si | Mn | Ni | P | S | Cr | Mo | V | N | Nb | Ti | Al | Cu | CEV |
max 0.16 | max 0.6 | max 1.7 | max 0.8 | max 0.025 | max 0.02 | max 0.3 | max 0.2 | max 0.12 | max 0.025 | max 0.05 | max 0.05 | max 0.02 | max 0.55 | max 0.48 |
Mechanical properties of grade S460ML (1.8838)
Temperature | -50 | -40 | -30 | -20 | -10 | 0 | 20 |
Notch impact test. Min. absorbed energy | 27 | 31 | 40 | 47 | 51 | 55 | 63 |
Nominal thickness (mm) | to 16 | 16 - 40 | 40 - 63 | 63 - 80 | 80 - 100 | 100 - 120 |
ReH - Minimum yield strength (MPa) | 460 | 440 | 430 | 410 | 400 | 385 |
Nominal thickness (mm) | to 40 | 40 - 63 | 63 - 80 | 80 - 100 | 100 - 120 |
Rm -Tensile strength (MPa) | 540-720 | 530-710 | 510-690 | 500-680 | 490-660 |
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Nominal thickness (mm) | - |
A - Minimum elongation Lo = 5,65 √ So (%) | 17 |
Equivalent grades of grade S460ML (1.8838)
Germany DIN,WNr |
France AFNOR |
England BS |
Italy UNI |
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