416 Stainless Steel Round Bar

Grade: 416/UNS S41600

Size:

Cold drawn: φ4mm-φ60mm

Hot Rolled: φ16mm-φ230mm

Forged: φ230mm-φ1200mm

Surface Finish: Black Annealed, Polished Bright, Centerless Grinding

Diameter Tolerance: H9, H11, h9, h11 etc

416 stainless steel is a free-machining martensitic chromium stainless steel grade designated as UNS S41600. It is specifically developed to provide excellent machinability while maintaining the strength, hardness, and corrosion resistance characteristics of martensitic stainless steels. With the addition of sulfur, 416 stainless steel offers significantly improved machining performance compared with conventional 410 stainless steel, making it one of the most widely used free-machining stainless steel grades.

The alloy contains chromium as the primary corrosion-resistant element, which forms a passive chromium oxide layer that provides resistance to atmospheric corrosion and mild chemical environments. The sulfur addition creates manganese sulfide inclusions within the microstructure, reducing cutting forces, improving chip breaking, and extending tool life during machining operations. However, the sulfur content slightly reduces corrosion resistance and toughness compared with non-free-machining grades.

416 stainless steel bars are normally supplied in annealed condition for machining and can be hardened through quenching and tempering processes to achieve higher strength and hardness. After heat treatment, the material provides good wear resistance, dimensional stability, and mechanical strength. It has excellent machinability in the annealed condition and can be readily turned, drilled, milled, and threaded.

Due to its excellent machining performance and moderate corrosion resistance, 416 stainless steel bars are widely used in automatic screw machine components, shafts, gears, valves, pumps, fasteners, bushings, fittings, and precision mechanical parts. It is especially suitable for high-volume production applications where machining efficiency and dimensional accuracy are important.

ASTM / JIS / EN Standards

Standard System Standard / Grade Description
ASTM ASTM A276 / A276M – UNS S41600 Stainless Steel Bars and Shapes
ASTM ASTM A582 / A582M – UNS S41600 Free-Machining Stainless Steel Bars
UNS S41600 416 Stainless Steel Grade
JIS JIS G4303 SUS416 Stainless Steel Bars
EN EN 10088-3 1.4005 X12CrS13 Stainless Steel
DIN DIN 1.4005 Equivalent European Material Designation

Stainless Steel Bar Execution Standards

Item Specification
Product Type Round Bar, Square Bar, Hexagonal Bar
Manufacturing Process Hot Rolled, Cold Drawn, Peeled, Ground, Polished
Heat Treatment Annealed, Hardened and Tempered
Annealing Temperature Approximately 815–900°C
Hardening Temperature Approximately 925–1010°C followed by oil or air cooling
Tempering Temperature Approximately 200–650°C depending on required properties
Surface Condition Black Surface, Bright Surface, Ground Surface, Polished Surface
Dimensional Tolerance According to ASTM A276 / ASTM A582 requirements
Inspection Chemical Analysis, Mechanical Testing, Hardness Testing, Dimensional Inspection
Supply Condition Annealed, Heat Treated, Machined Condition

Chemical Composition (%)

Element Composition Requirement
Carbon (C) ≤ 0.15
Silicon (Si) ≤ 1.00
Manganese (Mn) ≤ 1.25
Phosphorus (P) ≤ 0.060
Sulfur (S) 0.15 – 0.35
Chromium (Cr) 12.00 – 14.00
Nickel (Ni) ≤ 0.60
Molybdenum (Mo) ≤ 0.60
Iron (Fe) Balance

Mechanical Properties

Hardened and Tempered Condition (Typical)

Property Requirement
Tensile Strength 650–850 MPa
Yield Strength (0.2% Offset) ≥ 450 MPa
Elongation ≥ 10%
Hardness 25–40 HRC (Typical)
Condition Hardened and Tempered

Annealed Condition (Typical)

Property Requirement
Tensile Strength Approximately 515 MPa
Hardness ≤ 223 HB
Condition Annealed
Industry Applications
Automatic Machining Industry Screw machine parts, precision components
Valve Industry Valve bodies, valve stems, fittings
Pump Industry Pump shafts, pump components
Mechanical Engineering Shafts, gears, bushings, fasteners
Automotive Industry Engine components, transmission parts
Electrical Industry Motor shafts, precision hardware
Industrial Equipment Machined fittings and structural components

416 stainless steel is a free-machining martensitic chromium stainless steel grade designated as UNS S41600. It is specifically developed to provide excellent machinability while maintaining the strength, hardness, and corrosion resistance characteristics of martensitic stainless steels. With the addition of sulfur, 416 stainless steel offers significantly improved machining performance compared with conventional 410 stainless steel, making it one of the most widely used free-machining stainless steel grades.

The alloy contains chromium as the primary corrosion-resistant element, which forms a passive chromium oxide layer that provides resistance to atmospheric corrosion and mild chemical environments. The sulfur addition creates manganese sulfide inclusions within the microstructure, reducing cutting forces, improving chip breaking, and extending tool life during machining operations. However, the sulfur content slightly reduces corrosion resistance and toughness compared with non-free-machining grades.

416 stainless steel bars are normally supplied in annealed condition for machining and can be hardened through quenching and tempering processes to achieve higher strength and hardness. After heat treatment, the material provides good wear resistance, dimensional stability, and mechanical strength. It has excellent machinability in the annealed condition and can be readily turned, drilled, milled, and threaded.

Due to its excellent machining performance and moderate corrosion resistance, 416 stainless steel bars are widely used in automatic screw machine components, shafts, gears, valves, pumps, fasteners, bushings, fittings, and precision mechanical parts. It is especially suitable for high-volume production applications where machining efficiency and dimensional accuracy are important.

ASTM / JIS / EN Standards

Standard System Standard / Grade Description
ASTM ASTM A276 / A276M – UNS S41600 Stainless Steel Bars and Shapes
ASTM ASTM A582 / A582M – UNS S41600 Free-Machining Stainless Steel Bars
UNS S41600 416 Stainless Steel Grade
JIS JIS G4303 SUS416 Stainless Steel Bars
EN EN 10088-3 1.4005 X12CrS13 Stainless Steel
DIN DIN 1.4005 Equivalent European Material Designation

Stainless Steel Bar Execution Standards

Item Specification
Product Type Round Bar, Square Bar, Hexagonal Bar
Manufacturing Process Hot Rolled, Cold Drawn, Peeled, Ground, Polished
Heat Treatment Annealed, Hardened and Tempered
Annealing Temperature Approximately 815–900°C
Hardening Temperature Approximately 925–1010°C followed by oil or air cooling
Tempering Temperature Approximately 200–650°C depending on required properties
Surface Condition Black Surface, Bright Surface, Ground Surface, Polished Surface
Dimensional Tolerance According to ASTM A276 / ASTM A582 requirements
Inspection Chemical Analysis, Mechanical Testing, Hardness Testing, Dimensional Inspection
Supply Condition Annealed, Heat Treated, Machined Condition

Chemical Composition (%)

Element Composition Requirement
Carbon (C) ≤ 0.15
Silicon (Si) ≤ 1.00
Manganese (Mn) ≤ 1.25
Phosphorus (P) ≤ 0.060
Sulfur (S) 0.15 – 0.35
Chromium (Cr) 12.00 – 14.00
Nickel (Ni) ≤ 0.60
Molybdenum (Mo) ≤ 0.60
Iron (Fe) Balance

Mechanical Properties

Hardened and Tempered Condition (Typical)

Property Requirement
Tensile Strength 650–850 MPa
Yield Strength (0.2% Offset) ≥ 450 MPa
Elongation ≥ 10%
Hardness 25–40 HRC (Typical)
Condition Hardened and Tempered

Annealed Condition (Typical)

Property Requirement
Tensile Strength Approximately 515 MPa
Hardness ≤ 223 HB
Condition Annealed
Industry Applications
Automatic Machining Industry Screw machine parts, precision components
Valve Industry Valve bodies, valve stems, fittings
Pump Industry Pump shafts, pump components
Mechanical Engineering Shafts, gears, bushings, fasteners
Automotive Industry Engine components, transmission parts
Electrical Industry Motor shafts, precision hardware
Industrial Equipment Machined fittings and structural components

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