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Bright Finish SUS303 Stainless Steel Hexagonal Bar / SS Round Rod

JIANGSU MITTEL STEEL INDUSTRIAL LIMITED

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Address: NO.288,YOUYI ROAD ,XI SHAN DISTRICT,WUXI CITY,CHINA

Contact name:Gao Ben

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Bright Finish SUS303 Stainless Steel Hexagonal Bar / SS Round Rod

Country/Region china
City & Province wuxi jiangsu
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Product Details

303 Round Bar SUS303 Stainless Steel Bar 303 Hexagonal Bar 303 ss round bar

Close Analogs: AISI Type 303 Se

Key Words: T303, T 303, 303SS, 303 SS, AFNOR Z 10 CNF 18.09 (Fr), UNI X 10 CrNiS 18 09, SUS 303, SS14 2346 (Sweden), B.S. 303 S 21, UNS S30300, AMS 5640 (1), ASME SA194, ASME SA320, ASTM A194, ASTM A314, ASTM A320, ASTM A320, ASTM A473, ASTM A581, ASTM A582, MIL SPEC MIL-S-862, SAE J405 (30303), DIN 1.4305, X12CrNiS188, EN 58M, austenitic, ISO 683/13 17, 18-8

ComponentWt. %
CMax 0.15 
Cr18 
Fe69 
ComponentWt. %
MnMax 2 
MoMax 0.6 
Ni9 
ComponentWt. %
PMax 0.2 
SMin 0.15 
SiMax 1 

 

Physical PropertiesMetricEnglishComments
Density8 g/cc0.289 lb/in³ 

Mechanical Properties
Hardness, Brinell228228 
Hardness, Knoop251251Converted from Brinell hardness.
Hardness, Rockwell B9696Converted from Brinell hardness.
Hardness, Rockwell C1919Converted from Brinell hardness. Value below normal HRC range, for comparison only.
Hardness, Vickers240240Converted from Brinell hardness.
Tensile Strength, Ultimate690 MPa100000 psi 
Tensile Strength, Yield415 MPa60200 psiat 0.2% offset
Elongation at Break40 %40 %in 50 mm
Modulus of Elasticity193 GPa28000 ksitension
Poisson's Ratio0.250.25Calculated
Fatigue Strength240 MPa34800 psiannealed sample
Fatigue Strength330 MPa47900 psi25% hardened sample
Shear Modulus77.2 GPa11200 ksi 

Electrical Properties
Electrical Resistivity7.2e-005 ohm-cm7.2e-005 ohm-cm 

Thermal Properties
CTE, linear 20°C17.2 µm/m-°C9.56 µin/in-°Ffrom from 0-100°C
CTE, linear 250°C17.8 µm/m-°C9.89 µin/in-°Fat 0-315°C (32-600°F)
CTE, linear 500°C18.4 µm/m-°C10.2 µin/in-°Fat 0-540°C, 18.7 µm/m-C at 0-650°C
Specific Heat Capacity0.5 J/g-°C0.12 BTU/lb-°Ffrom 0-100°C (32-212°F)
Thermal Conductivity16.2 W/m-K112 BTU-in/hr-ft²-°Fat 100°C (212°F), 21.5 W/m-K at 500°C (930°F)
Melting Point1400 - 1420 °C2550 - 2590 °F 
Solidus1400 °C2550 °F 
Liquidus1420 °C2590 °F

 

 

Product features

  • 303 stainless steel offers better machinability than 304 stainless steel
  • Unpolished (mill) surface has no finish
  • Meets ASTM A582 specifications
  • Annealed after shaping to modify the metal's properties
  • Standard tolerance
 
 

Product description

 

The 303 stainless steel round rod has an unpolished (mill) surface, has been annealed, meets American Society for Testing and Materials International ASTM A582 specifications, and has a standard tolerance. The 303 stainless steel grade offers better machinability than general-purpose 304 stainless steel with slightly less corrosion resistance. An austenitic stainless steel, 303 is typically nonmagnetic and can be cold worked to increase its hardness and strength while maintaining most of its formability. The material has been annealed, a method of heating and cooling metal to modify its properties, such as increasing its formability and toughness or decreasing its strength, after it has been shaped.

Stainless steel is an iron alloy with resistance to staining and rusting in many environments where steel would typically degrade. The chemical composition of each grade creates a grain structure that falls into one of five classes: austenitic, duplex, ferritic, martensitic, and precipitation hardening. The austenitic class contains the most formable, weldable, and corrosion-resistant stainless steel grades, but they cannot be heat treated. The duplex class offers high resistance to pitting and chloride stress corrosion cracking. Duplex grades are heat treatable and roughly twice as strong as austenitic grades. The ferritic class contains moderately formable and corrosion-resistant grades compared to other stainless steel classes, but they cannot be heat treated. The martensitic class includes some of the hardest and strongest stainless steel grades that also offer mild corrosion resistance, high hardness, and good formability. Martensitic grades can be heat treated. The precipitation-hardening (PH) class can be heat treated after fabrication to achieve some of the highest hardness ratings in stainless steel.

Tensile strength, used to indicate the material’s overall strength, is the peak stress it can withstand before it breaks. Corrosion resistance describes the material's ability to prevent deterioration caused by atmosphere, moisture, or other medium. Wear resistance indicates the ability to prevent surface damage caused by contact with other surfaces. Toughness describes the material's ability to absorb energy before breaking, while hardness (commonly measured as indentation hardness) describes its resistance to permanent surface deformation. Formability indicates how easily the material can be permanently shaped. Machinability describes how easily it can be cut, shaped, finished, or otherwise machined, while weldability characterizes the ability to be welded. Magnetism characterizes how much the material is repelled by or attracted to a magnet.

 

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