Chemical composition
| C ≤ |
Si ≤ |
Mn ≤ |
P ≤ |
S ≤ |
Cr | Ni |
|---|---|---|---|---|---|---|
| 0.32-0.38 | 0.15-0.35 | 0.6-0.9 | 0.03 | 0.03 | ≤0.2 | ≤0.2 |
| Mo | Al | Cu | Nb | Ti | V | Ce |
| ≤0.3 | ||||||
| N | Co | Pb | B | Other | ||
| Cr+Ni≤0.35 | ||||||
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Products Description Standards of S35C - Carbon Steel S35C is a type of carbon steel known for its specific properties and wide range of applications. In terms of standards, S35C carbon steel adheres to certain specifications regarding chemical composition, mechanical properties, and...
| C ≤ |
Si ≤ |
Mn ≤ |
P ≤ |
S ≤ |
Cr | Ni |
|---|---|---|---|---|---|---|
| 0.32-0.38 | 0.15-0.35 | 0.6-0.9 | 0.03 | 0.03 | ≤0.2 | ≤0.2 |
| Mo | Al | Cu | Nb | Ti | V | Ce |
| ≤0.3 | ||||||
| N | Co | Pb | B | Other | ||
| Cr+Ni≤0.35 | ||||||
In terms of standards, S35C carbon steel adheres to certain specifications regarding chemical composition, mechanical properties, and manufacturing processes. The chemical composition typically includes a moderate amount of carbon, around 0.32% to 0.38%, along with manganese, silicon, and other elements in controlled amounts. These elements contribute to the steel's overall strength, hardness, and ductility.
The mechanical properties of S35C are defined by its tensile strength, yield strength, and hardness. It has a relatively high tensile strength, allowing it to withstand significant pulling forces without breaking. The yield strength indicates its ability to resist deformation under load. The hardness can be adjusted through heat treatment processes, making it suitable for different applications.
When compared to other carbon steels, S35C has its own unique characteristics. For example, compared to lower carbon steels, S35C has higher strength and hardness. This makes it suitable for applications where greater mechanical strength is required. On the other hand, compared to higher carbon steels, S35C may have better ductility and weldability. This makes it easier to fabricate and join using common welding methods.


S35C carbon steel finds applications in various industries. In the machinery manufacturing industry, it is used for parts such as shafts, gears, and bolts. In the automotive industry, it can be found in components that require strength and durability. It is also used in the construction industry for structural elements.
In conclusion, S35C carbon steel has specific standards in terms of chemical composition and mechanical properties. When compared to other carbon steels, it offers a balance of strength, ductility, and weldability. Its wide range of applications makes it an important material in different industries. Understanding its standards and characteristics is crucial for proper selection and use.
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