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  • Bearing Steel
    Bearing Steel
    Bearing steel is the steel used to manufacture ball bearings, rollers, and bearing rings. Bearing steel has high and uniform hardness and wear resistance, as well as high elastic limit. The requirements for the uniformity of chemical composition, content and distribution of non-metallic inclusions, and distribution of carbides in bearing steel are very strict, making it one of the most demanding steel grades in all steel production. In 1976, the International Organization for Standardization (ISO) included some common bearing steel grades in international standards, dividing bearing steel into four categories: fully quenched bearing steel, surface hardened bearing steel, stainless bearing steel, and high-temperature bearing steel, totaling 17 steel grades.
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  • Bearing Steel
    Bearing Steel
    Bearing steel is the steel used to manufacture ball bearings, rollers, and bearing rings. Bearing steel has high and uniform hardness and wear resistance, as well as high elastic limit. The requirements for the uniformity of chemical composition, content and distribution of non-metallic inclusions, and distribution of carbides in bearing steel are very strict, making it one of the most demanding steel grades in all steel production. In 1976, the International Organization for Standardization (ISO) included some common bearing steel grades in international standards, dividing bearing steel into four categories: fully quenched bearing steel, surface hardened bearing steel, stainless bearing steel, and high-temperature bearing steel, totaling 17 steel grades.
    Learn More →
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  • Bearing Steel
    Bearing Steel
    Bearing steel is the steel used to manufacture ball bearings, rollers, and bearing rings. Bearing steel has high and uniform hardness and wear resistance, as well as high elastic limit. The requirements for the uniformity of chemical composition, content and distribution of non-metallic inclusions, and distribution of carbides in bearing steel are very strict, making it one of the most demanding steel grades in all steel production. In 1976, the International Organization for Standardization (ISO) included some common bearing steel grades in international standards, dividing bearing steel into four categories: fully quenched bearing steel, surface hardened bearing steel, stainless bearing steel, and high-temperature bearing steel, totaling 17 steel grades.
    Learn More →
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  • Medium Carbon Steel
    Medium Carbon Steel
    Medium carbon steel has good hot working and cutting performance, but poor welding performance. Strength and hardness are higher than low carbon steel, while plasticity and toughness are lower than low carbon steel. Cold rolled or cold drawn materials can be used directly without heat treatment, or they can be used after heat treatment. The quenched and tempered medium carbon steel has good comprehensive mechanical properties. The highest achievable hardness is approximately HRC55 (HB538), with a σ b of 600-1100MPa. So among various applications with moderate strength, medium carbon steel is the most widely used, not only as a building material, but also extensively used in the manufacture of various mechanical parts.
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  • Medium Carbon Steel
    Medium Carbon Steel
    Medium carbon steel has good hot working and cutting performance, but poor welding performance. Strength and hardness are higher than low carbon steel, while plasticity and toughness are lower than low carbon steel. Cold rolled or cold drawn materials can be used directly without heat treatment, or they can be used after heat treatment. The quenched and tempered medium carbon steel has good comprehensive mechanical properties. The highest achievable hardness is approximately HRC55 (HB538), with a σ b of 600-1100MPa. So among various applications with moderate strength, medium carbon steel is the most widely used, not only as a building material, but also extensively used in the manufacture of various mechanical parts.
    Learn More →
    Get A Quote →
  • Medium Carbon Steel
    Medium Carbon Steel
    Medium carbon steel has good hot working and cutting performance, but poor welding performance. Strength and hardness are higher than low carbon steel, while plasticity and toughness are lower than low carbon steel. Cold rolled or cold drawn materials can be used directly without heat treatment, or they can be used after heat treatment. The quenched and tempered medium carbon steel has good comprehensive mechanical properties. The highest achievable hardness is approximately HRC55 (HB538), with a σ b of 600-1100MPa. So among various applications with moderate strength, medium carbon steel is the most widely used, not only as a building material, but also extensively used in the manufacture of various mechanical parts.
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  • Free-cutting Steel
    Free-cutting Steel
    Easy cutting steel refers to alloy steel in which a certain amount of one or more easy cutting elements such as sulfur, phosphorus, lead, calcium, selenium, tellurium, etc. are added to the steel to improve its machinability. With the automation, high speed, and precision of cutting processing, it is very important for steel to have good machinability. This type of steel is mainly used for processing on automatic cutting machines and therefore also belongs to specialized steel.
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  • Free-cutting Steel
    Free-cutting Steel
    Easy cutting steel refers to alloy steel in which a certain amount of one or more easy cutting elements such as sulfur, phosphorus, lead, calcium, selenium, tellurium, etc. are added to the steel to improve its machinability. With the automation, high speed, and precision of cutting processing, it is very important for steel to have good machinability. This type of steel is mainly used for processing on automatic cutting machines and therefore also belongs to specialized steel.
    Learn More →
    Get A Quote →
  • Free-cutting Steel
    Free-cutting Steel
    Easy cutting steel refers to alloy steel in which a certain amount of one or more easy cutting elements such as sulfur, phosphorus, lead, calcium, selenium, tellurium, etc. are added to the steel to improve its machinability. With the automation, high speed, and precision of cutting processing, it is very important for steel to have good machinability. This type of steel is mainly used for processing on automatic cutting machines and therefore also belongs to specialized steel.
    Learn More →
    Get A Quote →
  • Wear-resistant Round Steel
    Wear-resistant Round Steel
    There are two types of wear-resistant steel bars: one is hot-rolled round steel; Another type is quenched and tempered heat-treated steel bars. The matrix structure obtained by heat treatment of hot-rolled round steel is mainly bainite wear-resistant steel bars; Wear resistant steel bars are widely used in industries such as metallurgy and mining, cement and building materials, thermal power generation, flue gas desulfurization, magnetic materials, chemical industry, coal water slurry, pellet ore, slag, ultrafine powder, fly ash, calcium carbonate, quartz sand, etc.
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  • Wear-resistant Round Steel
    Wear-resistant Round Steel
    There are two types of wear-resistant steel bars: one is hot-rolled round steel; Another type is quenched and tempered heat-treated steel bars. The matrix structure obtained by heat treatment of hot-rolled round steel is mainly bainite wear-resistant steel bars; Wear resistant steel bars are widely used in industries such as metallurgy and mining, cement and building materials, thermal power generation, flue gas desulfurization, magnetic materials, chemical industry, coal water slurry, pellet ore, slag, ultrafine powder, fly ash, calcium carbonate, quartz sand, etc.
    Learn More →
    Get A Quote →
  • Wear-resistant Round Steel
    Wear-resistant Round Steel
    There are two types of wear-resistant steel bars: one is hot-rolled round steel; Another type is quenched and tempered heat-treated steel bars. The matrix structure obtained by heat treatment of hot-rolled round steel is mainly bainite wear-resistant steel bars; Wear resistant steel bars are widely used in industries such as metallurgy and mining, cement and building materials, thermal power generation, flue gas desulfurization, magnetic materials, chemical industry, coal water slurry, pellet ore, slag, ultrafine powder, fly ash, calcium carbonate, quartz sand, etc.
    Learn More →
    Get A Quote →
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