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Stainless Steel 316L circles are made from a low carbon grade of 316 stainless steel. They are widely used for its excellent corrosion resistance, especially in chloride-containing atmospheres. The “L” in 316L refers to “Low carbon”, which is highly desirable since carbide formation is likely to occur when welding, which can be dangerous to the structure. It has approximately 16% chromium, 10% nickel, and 2% molybdenum.
The composition of the Stainless Steel 316L circle is crucial for understanding its properties and performance in various industrial applications.
Weight % | C | Mn | P | S | Si | Cr | Ni | Mo |
316L | .035 | 2.00 | .045 | .030 | 1.00 | 16.0-18.0 | 10.0-14.0 | 2.0-3.0 |
Thus, this table provides valuable insight into the chemical composition of these circles, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of the Stainless Steel 316L circle in demanding environments.
Grade | Tensile Strength (MPa) min | Yield Strength 0.2% Proof (MPa) min | Elongation (% in 50mm) min | Hardness | |
Rockwell B (HR B) max | Brinell (HB) max | ||||
SS 316L | 485 | 170 | 40 | 95 | 217 |
Thus, this valuable data on the Stainless Steel 316L circle's strength, flexibility, and resilience is crucial for ensuring reliability and longevity.
These flexible circles offer numerous benefits for various industrial applications.
Stainless Steel 316L circle offers several advantages that make it suitable for industrial and commercial applications.
Due to its excellent features, the Stainless Steel 316L circle is preferred in various industrial applications. Some of the main applications include.
Stainless Steel 316L circles are applied across various industries due to their valuable features, which make them versatile.
Stainless Steel 316L circles are made from a low carbon grade of 316 stainless steel. They are widely used for its excellent corrosion resistance, especially in chloride-containing atmospheres. The “L” in 316L refers to “Low carbon”, which is highly desirable since carbide formation is likely to occur when welding, which can be dangerous to the structure. It has approximately 16% chromium, 10% nickel, and 2% molybdenum.
The composition of the Stainless Steel 316L circle is crucial for understanding its properties and performance in various industrial applications.
Weight % | C | Mn | P | S | Si | Cr | Ni | Mo |
316L | .035 | 2.00 | .045 | .030 | 1.00 | 16.0-18.0 | 10.0-14.0 | 2.0-3.0 |
Thus, this table provides valuable insight into the chemical composition of these circles, highlighting their properties and suitability.
The table provides essential information for engineers and manufacturers to assess the integrity and durability of the Stainless Steel 316L circle in demanding environments.
Grade | Tensile Strength (MPa) min | Yield Strength 0.2% Proof (MPa) min | Elongation (% in 50mm) min | Hardness | |
Rockwell B (HR B) max | Brinell (HB) max | ||||
SS 316L | 485 | 170 | 40 | 95 | 217 |
Thus, this valuable data on the Stainless Steel 316L circle's strength, flexibility, and resilience is crucial for ensuring reliability and longevity.
These flexible circles offer numerous benefits for various industrial applications.
Stainless Steel 316L circle offers several advantages that make it suitable for industrial and commercial applications.
Due to its excellent features, the Stainless Steel 316L circle is preferred in various industrial applications. Some of the main applications include.
Stainless Steel 316L circles are applied across various industries due to their valuable features, which make them versatile.
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