C Type Steel, or called Strut Channel Unistrut Strut C Channel, standard can be GB/T, ASTA,DIN,is widely used in steel structure building purlins, wall beams, but also can be combined into lightweight roof truss, bracket and other building components. In addition, it can also be used for column, beam and arm in mechanical light industry manufacturing etc.
Dimensions Of C Type Steel
The dimensions of C-shaped steel are usually determined by three parameters: height, width and thickness. Common C-shaped steel specifications include but are not limited to:
Height: The height of C-shaped steel generally ranges from 100mm to 300mm, and the specific height depends on different uses and load-bearing capacity.
Width: The width of C-shaped steel generally ranges from 60mm to 150mm, and the specific width also depends on different uses and load-bearing capacity.
Thickness: The thickness of C-shaped steel generally ranges from 0.5mm to 3.0mm, and the specific thickness depends on different uses and load-bearing capacity.
In addition, the specifications of C-shaped steel can be further subdivided into specific sizes, for example:
- C100×50×20×2.0
- C120×50×20×2.0
- C140×50×20×2.0
- C160×60×20×2.5
- C180×70×20×2.5
- C200×75×20×2.5
- C220×80×20×2.5
- C250×90×20×2.5
These specifications can be selected according to specific needs. C-shaped steel has the advantages of light weight, high strength, corrosion resistance, and easy processing. It is widely used in construction, machinery manufacturing, automobile manufacturing and other fields.
What Is C Type Steel & Its Uses




#1 Wall
C Type Steel are to fabricate dividers for things like carports, stockrooms, studios, and other metal structures, where they are utilized like studs in ordinary wood outlining. The studs run upward from the base plate of the divider to the top plate and bear the upward heap of the structure. A C Type Steel can uphold a lot more prominent measure of weight, and it is significantly more inflexible. The weight distinction between wood studs and the C Type Steel is immaterial. The steel channel is harder to introduce, as it requires welding and blasting instead of essentially driving nails.
#2 Pole Barn Walls
Steel can be utilized in post stables to frame the dividers, where it is run on a level plane from one shaft to another to give a connection highlighting the siding on the outside, which is frequently sheet metal. Wood can undoubtedly twist or bend, causing the completed divider to seem wavy and lessening its unbending nature and burden-bearing capacity.
#3 Roofs
On light-obligation rooftops, C Type Steel can be utilized as rafters, running from the overhang of the rooftop to the edge, where they offer help for the rooftop deck. The steel channel is more grounded and longer-enduring, and it won’t be harmed by decay, contagious rot, or dampness. C Type Steel to connect the holes between the rafters, permitting them to be further separated, and gives a connection to highlight the steel deck.
#4 Window And Door Frames
C Type Steel make secure edges for windows and entryways in both metal and wood-outlined structures.
#5 Wood Beam Supports
Steel channels can be put at the lower part of the pillar, and upheld by posts, to expand the strength of a current bar during a redesign.
#6 Vehicle Frames
C Type Steel is frequently used to develop the casings of vehicles and is regularly extraordinarily shaped for that specific capacity.
#7 Trailers
C Type Steel, usees for the development of trailers, including flatbed trailers, box trailers, and even travel trailers and RVs.
#8 Metal Buildings
C Type Steel is related to I-radiates and other steel items to construct a business and modern structures, like distribution centers. It can go about as girts, studs, supports, joists, or other underlying parts.
How Is C Type Steel Manufactured?
The C Type Steel is a versatile and widely used building material, and its production process is equally impressive. Now, let us know the various steps involved in C channel manufacturing.
Cutting The Steel
The first step in manufacturinq is to cut the steel into the desired shape and size. It’s made using a cutting machine designed specifically to cut steel into the desired shape and size.
Hot-Rolling The Steel
In this step, the steel is heated to a high temperature to make it malleable and easier to shape. After the steel has been heated, it is cooled and shaped into the desired C channel shape.
Coating The C Type Steel
The next step in the manufacturing process is to finish the C Type Steel. It is done by sanding the steel to give it a smooth finish and then applying a protective steel coating to protect it from corrosion and other environmental factors. Once the protective coatinq has been applied, the C Type Steel is ready for construction project usage.
Key Characteristics Of A C Type Steel Channel
Shape: The cross-section of a C Type Steel resembles the letter “C” and consists of a flat back (the web) with two perpendicular extensions (the flanges) on either side. The flanges can be oriented either outward (open side) or inward (closed side) depending on the specific use and load-bearing requirements.
Versatility: C Type Steel are versatile and can be used in a variety of structural applications. They are commonly used for framing and supporting components, such as beams and columns, in buildings, bridges, and industrial structures.
Strength: The shape of the C Type Steel provides strength and rigidity while minimizing material weight. This makes it an efficient choice for applications where maintaining structural integrity with minimal material usage is important.
Mounting and Attachment: C Type Steel often have evenly spaced holes or slots along the flanges for attaching them to other structural components or surfaces. This makes them easy to bolt, weld, or secure in place.
Material: C Type Steel are typically made from steel and are available in various grades, such as mild steel or structural steel, to meet specific load-bearing and structural requirements.
Standardization: The dimensions of C Type Steel steel channels are standardized based on industry standards. The dimensions of the web, flanges, and overall size are specified to ensure compatibility with other building components.
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