carbon steel hot rolled coil
carbon steel hot rolled sheet
carbon steel hot rolled coil packaging
carbon steel hot rolled sheet packaging
carbon steel hot rolled coil
carbon steel hot rolled sheet
carbon steel hot rolled coil packaging
carbon steel hot rolled sheet packaging

Carbon Steel Hot Rolled Coil / Strip / Plate / Sheet

Yieh Corp. offers a wide variety of carbon steel specifications and sizes in plate, sheet, and coil by adopting different fabrication methods based on your specific application.

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Properties of Carbon Steel Hot Rolled Coils and Sheets

Cost-Effective

Carbon Steel Hot Rolled Coils and Sheets are produced without the need for quenching or work-hardening, contributing to lower manufacturing costs. This cost-effectiveness makes them well-suited for large-scale construction, energy infrastructure, and transportation manufacturing.

Ductility

Carbon Steel Hot Rolled Coils and Sheets exhibit good ductility, making them easy to bend and form. This property facilitates the efficient customization of various shapes for industrial equipment and infrastructure projects.

Strength

Carbon Steel Hot Rolled Coils and Sheets possess reliable tensile and yield strengths, making them ideal for constructing building frames, machinery, and transportation components that require structurally sound materials for support.

Available Size
Packaging of Carbon Steel Hot Rolled Coils and Sheets
Chemical Composition of Carbon Steel Hot Rolled Coils and Sheets

Available Size of Carbon Steel Hot Rolled Coils and Sheets

Product Property Steel Grade Width (mm) Thickness (mm)
300 N/mm2 Commercial Quality

SAE 1006

SAE 1008

SAE 1010

SAE 1012

ASTM A1011 CS A

ASTM A1011 CS B

EN 10111 DD11

JIS G3132 SPHT1

600-1550 1.20-12.70
300 N/mm2Drawing Quality JIS G3131 SPHD 600-1550 1.60-12.70
400 N/mm2

SAE 1017

ASTM A36

ASTM A1011 SS Gr.36

ASTM A1011 SS Gr.40

JIS G3101 SS400

600-1550 1.60-12.70
450/500 N/mm2

SAE 1019

SAE 1020

SAE 1022

JIS 4051 S20C

ASTM A1011 SS Gr.45

ASTM A1011 SS Gr.50

ASTM A1011 SS Gr.55

JIS G3101 SS490

600-1550 1.60-12.70

450/500 N/mm2

High Strength Low Alloy

ASTM A1011 HSLAS

Gr.45 Class 1

ASTM A1011 HSLAS

Gr.50 Class 1

ASTM A1011 HSLAS

Gr.55 Class 1

ASTM A572 Gr. 50

600-1550 1.90-12.70

500 N/mm2

Atmospheric Corrosion Resistance

JIS G3125 SPA-H 600-1550 1.60-12.70

550/600 N/mm2

High Strength Low Alloy

JIS G3101 SS540 600-1550 2.00-6.00

600 N/mm2

Mn-Cr Alloy Steel

EN 10084 16MnCr5 600-1550 3.00-6.00

600 N/mm2

Medium Carbon Steel

SAE 1035

SAE 1045

SAE 1050

SAE 1055

JIS 4051 S35C

JIS 4051 S45C

JIS 4051 S50C

JIS 4051 S55C

600-1550 1.60-6.00

Packaging of Carbon Steel Hot Rolled Sheets

Surface Protection Waterproof Sealing Securing and Palletizing
The surface of Carbon Steel Hot Rolled Sheets are covered with a protective layer of polyethylene (PE) film, laser film, or oil to prevent oxidation and dirt accumulation. Carbon Steel Hot Rolled Sheets are securely wrapped in waterproof materials, including plastic film, shrink wrap, or waterproof kraft paper. Desiccants may be placed inside the packaging to prevent moisture buildup. The wrapped Carbon Steel Hot Rolled Sheets are securely strapped to wooden or metal pallets using durable steel or plastic bands, ensuring stability and safety in transit.

Packaging of Carbon Steel Hot Rolled Coils

Protective Wrapping Edge Protection and Cushioning Secure Palletizing
Carbon Steel Hot Rolled Coils are carefully wrapped with waterproof materials, such as plastic film or kraft paper, to shield against moisture, dust, and contamination in transit. Edge protectors and padding are applied around the coils to prevent physical damage, dents, or scratches during handling and shipping. The wrapped coils are securely fastened to wooden or metal pallets with durable steel or plastic bands. This ensures stability and safety during transit, and also simplifies handling and stacking.

Chemical Composition of Carbon Steel Hot Rolled Coils and Sheets(For Reference)

SAE standards are technical standards developed by SAE International to support mobility industries worldwide.

SAE standard

Chemical Composition

SAE standard

C% Mn% P% S%
SAE 1020 0.18-0.23 0.30-0.60 ≤ 0.030 ≤ 0.035
SAE 1035 0.32-0.38 0.60-0.90 ≤ 0.030 ≤ 0.035
SAE 1045 0.43-0.50 0.60-0.90 ≤ 0.030 ≤ 0.035
SAE 1050 0.48-0.55 0.60-0.90 ≤ 0.030 ≤ 0.035
SAE 1055 0.50-0.60 0.60-0.90 ≤ 0.030 ≤ 0.035

Japanese Industrial Standards (JIS) specifies the standards used for industrial activities in Japan.

JIS standard

Chemical Composition

JIS standard

C% Mn% P% S% Si% Cu% Ni% Cr%
S35C 0.32-0.38 0.60-0.90 ≤ 0.030 ≤ 0.035 0.15-0.35 ≤ 0.30 ≤ 0.20 ≤ 0.20
S45C 0.42-0.48 0.60-0.90 ≤ 0.030 ≤ 0.035 0.15-0.35 ≤ 0.30 ≤ 0.20 ≤ 0.20
S50C 0.47-0.53 0.60-0.90 ≤ 0.030 ≤ 0.035 0.15-0.35 ≤ 0.30 ≤ 0.20 ≤ 0.20
S55C 0.52-0.58 0.60-0.90 ≤ 0.030 ≤ 0.035 0.15-0.35 ≤ 0.30 ≤ 0.20 ≤ 0.20

Application of Carbon Steel

Construction

Carbon Steel Hot Rolled Coils and Sheets play a vital role in modern infrastructure, serving as feedstock for structural steel used in building frames and bridges. Their good strength and formability make them ideal for structural applications that require load-bearing capacity, particularly in high-rise buildings, warehouses, and civil engineering projects.

Infrastructure and Utilities

Carbon Steel Hot Rolled Coils and Sheets can be machined, welded, and used in infrastructure and utility applications such as gates, fences, and guard rails. When coated or painted, they offer improved durability and resistance to environmental wear.

Machinery and Equipment

Carbon Steel Hot Rolled Coils and Sheets are preferred for manufacturing machine frames, agricultural equipment, mining machinery components, and heavy-duty enclosures. Their toughness and durability ensure reliable performance in demanding operating environments.

Renewable Energy Sector

Carbon Steel Hot Rolled Coils and Sheets play a crucial role in the construction of wind turbine towers, support structures, and base plates. With their wide range of thicknesses and reliable mechanical properties, these materials can withstand extreme environmental conditions and dynamic loading, making them essential for renewable energy infrastructure.

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