IS 2062 Grade B Carbon Steel Plates and ASTM A36 Carbon Steel Plates

Steel Plate Industrial Plates manufacturer & supplierWe provide our clients with a precision engineered range of carbon steel plates and carbon steel sheets that are made from the alloys of steel. The carbon steel plates made from carbon alloy holds the following capacities:

  • Harder and stronger
  • Less ductile
  • More difficult to weld
  • Low melting point
  • Temperature resistance in general
  • Carbon Steel 1015 = S15C / 1045 = S45C

Technical Specifications

Thickness (mm) 1.50 mm – 110.00 mm
Width (mm) 1250 / 1500 / 1800 / 2000 / 2500 mm
Grade IS 1079; SAE 1006;IS 2062/ Fe 410; SAE 1008; ASTM A 36; SS400
The sheets and plates fabricated from steel alloy possesses the physical properties of density, reactivity, young’s modulus, and electrical and thermal conductivity almost same as those of its elements, but the engineering properties are much different. Those properties of steel alloy are:

  • High tensile strength
  • High shear strength
  • Free-Cutting Steel 12L14 = SUM24L / 1215 = SUM23 / 1144 = SUM43

We are known as the leading Distributor and exporter of the durable Mild & Carbon Steel Plates in India. Our Mild Steel Plates are used in critical engineering applications and several automotive applications. The Mild Steel Plates, offered by us, are available at the most competitive prices.

Mild Steel Plate Applications

  • Automobile
  • Fabrication
  • Infrastructure
  • General Engineering
  • Machine building

STRUCTUITRAL STEEL PLATES

CHEMICAL PROPERTIES

PHYSICAL PROPERTIES

C

Mn

S

P

Si

Y.S (Mpa) (Min)

UTS (Mpa) (Min)

El (%)

IMPACT (Min)

INDIA

IS 2062 GR.A

0.23

1.50

0.050

0.050

0.40

for thk<20mm-250,
for thk 20-40mm-240,
for thk>40mm-230

410

23

N.A

IS 2062 GR.B

0.22

1.50

0.045

0.045

0.40

for thk<20mm-250,
for thk 20-40mm-240,
for thk>40mm-230

410

23

27J at 0 ° C

Carbon steel, also called plain-carbon steel, is steel where the main interstitial alloying constituent is carbon. The American Iron and Steel Institute (AISI) defines carbon steel as: “Steel is considered to be carbon steel when no minimum content is specified or required for chromium, cobalt, molybdenum, nickel, niobium, titanium, tungsten, vanadium or zirconium, or any other element to be added to obtain a desired alloying effect; when the specified minimum for copper does not exceed 0.40 percent; or when the maximum content specified for any of the following elements does not exceed the percentages noted: manganese 1.65, silicon 0.60, copper 0.60.”

The term “carbon steel” may also be used in reference to steel which is not stainless steel; in this use carbon steel may include alloy papers.
As the carbon content rises, steel has the ability to become harder and stronger through heat treating, but this also makes it less ductile. Regardless of the heat treatment, a higher carbon content reduces weldability. In carbon steels, the higher carbon content lowers the melting point.

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