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Maximizing Strength, Minimizing Cost: Exploring the Cost-Effective Application of 9SMn36 Steel Grade

Maximizing Strength, Minimizing Cost: Exploring the Cost-Effective Application of 9SMn36 Steel Grade

The chemical composition of 9SMn36 steel grade typically includes:

– Carbon (C): 0.14-0.20%
– Silicon (Si): 0.10-0.40%
– Manganese (Mn): 1.00-1.30%
– Phosphorus (P): maximum 0.06%
– Sulfur (S): maximum 0.34%
– Chromium (Cr): maximum 0.30%

These elements are carefully balanced to provide the desired mechanical properties and cost-effectiveness of the steel grade.

In terms of mechanical properties, 9SMn36 steel grade exhibits the following characteristics:

– Tensile strength: 650-800 MPa (megapascals)
– Yield strength: 420-650 MPa
– Elongation: 7-15%
– Reduction in area: 25-50%
– Hardness: 190-230 HB (Brinell hardness)

These properties make 9SMn36 steel grade suitable for various applications where strength and cost-effectiveness are essential considerations. It is often utilized in the manufacturing of components that require high-strength and good machinability, such as shafts, bolts, nuts, and other mechanical parts.

By maximizing strength and minimizing cost, the cost-effective application of 9SMn36 steel grade allows manufacturers to produce durable and reliable products without compromising on quality.
9SMn36 Steel grade
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