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ASTM A276 Cold Drawn Stainless Steel Bar Round Flat Hexagon Square

Place of Origin China
Brand Name DELTA
Certification ISO
Model Number 201 304 316L 321 310S 2205 17-4PH
Minimum Order Quantity 500 kgs
Price 2400 - 3500 USD/Ton
Packaging Details standard packing for export
Delivery Time 5 - 12 days based on the quantity
Payment Terms L/C, T/T, Western Union
Supply Ability 20Ton per week

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Product Details
Shape Flat Standard ASTM EN GB JIS
Grade 201 304 316L 310S 321 2205 2507.etc Application Construction,Industry,surgical Tools,seawater Equipment.,kitchenware
Length Customers' Requirements,5.8m,6m,2m-6m,or As Required Size Custom As Request
Packing Standard Seaworthy Package,In Wooden Cases(for FCL/ LCL Shipment) Service Cutting, Surface Finishing
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ASTM A276 cold drawn stainless steel bar

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cold drawn stainless steel bar Round

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Square cold drawn stainless steel flat bar

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Product Description

ASTM A276 Cold Drawn Stainless Steel Bar / Round Bar / Flat Bar / Hexagon Bar / Square Bar

Flat Stainless Steel Bars

Flat stainless steel bars are those that have been produced on a rolling mill. In instances when the material needs to be polished in order to create a more consistent finish across all four sides (think architectural and aerospace applications), true flat bars often win out.

Other typical end uses for true flat stainless steel bars include food machinery, conveyor equipment, packaging equipment, bottling equipment, separators, and chemical processing, among others.

Why use true flat stainless steel bar:

• Tighter tolerances – thickness & width
• Better squareness on edge
• Can be produced as hot roll annealed and pickled or cold drawn

Be aware:

• Longer mill lead-times
• Cost of production can be higher than cut flats
• A limited number of US-based mills produce true flat bars

Edge-Conditioned Flat Stainless Steel Bars

Edge-conditioned flat stainless steel bars don’t start out as bars. They have been slit from coil or sheared or saw cut from plate, before the edge is conditioned. This means the edges may have a slightly different finish from the flat sides. In addition, edge-conditioned flat stainless steel bars may not be truly as flat as a true flat stainless steel bar.

Among the common uses for edge-conditioned stainless steel bars are stiffeners for tank manufacturing, ornamental applications, grab bars, bar rings, and structural members, among others.
Typical grades for edge-conditioned stainless steel flat bars are 304/304L stainless steel flat bar and 316/316L stainless steel flat bar.

Why use edge-conditioned stainless steel flat bar:

• The cost of product is typically less than true flat
• There is a larger market for cut flats
• Can be an outstanding value where tolerances will permit
• Widely available and can typically have short lead times
• Can be purchased already polished on two or four sides

Be aware:

• Tolerances are typically not as tight, as it is difficult to use precision equipment
• Edges are not as square – difficult to machine or finish easily
• Thickness limitations exist due to slitting, shearing and gauge-edge constraints

 

Standard Informations

 

The ASTM A276 specification covers hot -finished or cold-finished stainless steel bars, except bars for reforging. More specifically, the ASTM 276 specification encompasses the following products in the more commonly used types of stainless steel:

  • Stainless Steel Bars, including round bars, square bars, and hex bars, rolled flat bars, sheared & edged bars, half round bars.
  • Stainless Steel hot rolled or extruded structural shapes, including angles, tees, channels, beams, and unequal angles.

The bars shall be furnished in one of the following conditions:

  • Condition A in which the bars are annealed
  • Condition H in which the bars are hardened and tempered at a relative temperature
  • Condition T in which the bars are hardened and tempered at a relatively high temperature
  • Condition S in which the bars are strain hardened or relatively light cold worked
  • Condition B in which the bars are relatively severe cold worked.

The material shall be subjected to a mechanical test to determine its tensile strength, yield strength, elongation, and Brinell hardness

 

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