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Stainless Steel 316L gaskets are used in several industries for sealing where corrosion is a major factor in several applications. These are characterised by their high resistance and flexibility, increased resistance to sensitisation during welding and excellent performance in corrosive conditions.
The chemical composition table provides vital insight into the chemical makeup of the Stainless Steel 316L Gasket.
Grade | C | Mn | Si | P | S | Cr | Mo | Ni | N | |
316L | Min | - | - | - | - | - | 16.0 | 2.00 | 10.0 | - |
Max | 0.03 | 2.0 | 0.75 | 0.045 | 0.03 | 18.0 | 3.00 | 14.0 | 0.10 |
Thus, this table helps readers understand the materials used in these Patti and enables informed decisions regarding their suitability for various industrial operations.
The table below serves as a valuable reference point for understanding the performance characteristics of the Stainless Steel 316L Gasket.
Grade | Tensile Str (MPa) min | Yield Str 0.2% Proof (MPa) min | Elong (% in 50mm) min | Hardness | |
Rockwell B (HR B) max | Brinell (HB) max | ||||
316L | 485 | 170 | 40 | 95 | 217 |
Thus, one can assess the Patta Patti's structural integrity and suitability for demanding industrial applications.
Stainless Steel 316L gaskets possess several key features that make them highly desirable for industrial applications:
Thus, Stainless Steel 316L gaskets are versatile as they incorporate some characteristics and are crucial in significant industrial operations.
SS 316L gaskets are used extensively in numerous sectors of industries. Some of the key applications include:
Thus, Stainless Steel 316L gaskets are used in various industries as they offer the best sealing solutions.
Stainless Steel 316L gaskets are used in several industries for sealing where corrosion is a major factor in several applications. These are characterised by their high resistance and flexibility, increased resistance to sensitisation during welding and excellent performance in corrosive conditions.
The chemical composition table provides vital insight into the chemical makeup of the Stainless Steel 316L Gasket.
Grade | C | Mn | Si | P | S | Cr | Mo | Ni | N | |
316L | Min | - | - | - | - | - | 16.0 | 2.00 | 10.0 | - |
Max | 0.03 | 2.0 | 0.75 | 0.045 | 0.03 | 18.0 | 3.00 | 14.0 | 0.10 |
Thus, this table helps readers understand the materials used in these Patti and enables informed decisions regarding their suitability for various industrial operations.
The table below serves as a valuable reference point for understanding the performance characteristics of the Stainless Steel 316L Gasket.
Grade | Tensile Str (MPa) min | Yield Str 0.2% Proof (MPa) min | Elong (% in 50mm) min | Hardness | |
Rockwell B (HR B) max | Brinell (HB) max | ||||
316L | 485 | 170 | 40 | 95 | 217 |
Thus, one can assess the Patta Patti's structural integrity and suitability for demanding industrial applications.
Stainless Steel 316L gaskets possess several key features that make them highly desirable for industrial applications:
Thus, Stainless Steel 316L gaskets are versatile as they incorporate some characteristics and are crucial in significant industrial operations.
SS 316L gaskets are used extensively in numerous sectors of industries. Some of the key applications include:
Thus, Stainless Steel 316L gaskets are used in various industries as they offer the best sealing solutions.
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