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Carbon steel includes mild steel. Mild carbon steel(as it is referred to) contains .05 - .29% carbon. Medium carbon steel is from .30 - .59%. High carbon steel is from .60 - .99%. Ultra high carbon steel is from 1.00 - 2.00%. Steel is considered carbon steel up to 2.1%. Past that it is considered cast iron. The more carbon in the steel the harder and less ductile and maleable it is and also the more brittle it is. The less carbon in the steel more it will bend and shape without breaking. So in essence carbon adds strength but takes away from its elasticity.

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9y ago
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bhansali enterprise

Lvl 1
1y ago
Mild steel is a type of carbon steel. The element carbon is present in all steel. Whenever this carbon is the main alloying element, the alloy is considered a carbon steel. "Low-carbon" steel is another name for mild steel.
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VS Waterproofing

Lvl 7
8mo ago

Mild steel and high carbon steel are two different types of steel with distinct properties and characteristics. The primary difference between them lies in their carbon content, which significantly influences their mechanical properties, uses, and applications. Here's an overview of the differences between mild steel and high carbon steel:

1. Carbon Content:

  • **Mild Steel:** Also known as low carbon steel, mild steel contains a relatively low percentage of carbon, usually around 0.05% to 0.25%. The low carbon content makes mild steel relatively soft and easy to work with.

  • **High Carbon Steel:** High carbon steel, as the name suggests, contains a higher percentage of carbon, typically ranging from 0.6% to 1.0% or even higher. The increased carbon content makes high carbon steel harder and more brittle than mild steel.

2. Mechanical Properties:

  • **Mild Steel:** Mild steel is characterized by its ductility, malleability, and relatively low hardness. It can be easily formed, machined, and welded. It has a lower tensile strength and yield strength compared to high carbon steel.

  • **High Carbon Steel:** High carbon steel has higher hardness, strength, and wear resistance due to its increased carbon content. However, it becomes less ductile and more brittle. It's more challenging to machine and work with due to its hardness.

3. Uses and Applications:

  • **Mild Steel:** Mild steel is commonly used in various applications where its ease of fabrication, welding, and cost-effectiveness are important. It's used for structural components, automotive parts, pipes, sheets, and general-purpose construction.

  • **High Carbon Steel:** High carbon steel is often used in applications where strength and wear resistance are crucial, such as cutting tools (e.g., knives, saw blades), springs, high-strength wires, and components requiring hardened surfaces.

4. Heat Treatment:

  • **Mild Steel:** Mild steel is not typically heat-treated for hardness. It can be annealed or normalized for improved machinability.

  • **High Carbon Steel:** High carbon steel is often heat-treated to increase hardness and strength. Processes like quenching and tempering are used to achieve desired mechanical properties.

5. Weldability:

  • **Mild Steel:** Mild steel has good weldability due to its lower carbon content, making it suitable for various welding processes.

  • **High Carbon Steel:** High carbon steel can be more challenging to weld due to its increased carbon content and potential for cracking during cooling. Specialized welding techniques and preheating might be required.

In summary, the main distinction between mild steel and high carbon steel is their carbon content, which influences their mechanical properties, workability, and applications. Mild steel is versatile and easy to work with, while high carbon steel offers higher hardness and strength at the cost of reduced ductility. The choice between the two depends on the specific requirements of the intended application.

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Rakesh singh

Lvl 3
7mo ago

The primary difference between mild steel (MS) and high-carbon steel lies in their carbon content and subsequent properties.

Carbon Content: Mild steel contains a relatively low percentage of carbon, typically around 0.05% to 0.25%. High-carbon steel, on the other hand, has a much higher carbon content, usually ranging from 0.60% to 1.0% or even higher.

Strength and Hardness: High-carbon steel is significantly stronger and harder than mild steel due to its higher carbon content. It's more suitable for applications requiring high strength and wear resistance.

Ductility and Toughness: Mild steel is more ductile and has better toughness. It can bend without breaking, making it suitable for various construction and manufacturing purposes.

Weldability: Mild steel is easier to weld and work with compared to high-carbon steel, which can be brittle and challenging to weld.

Applications: Mild steel is commonly used in construction, automotive, and general manufacturing, while high-carbon steel is preferred for specialized applications like cutting tools, springs, and high-strength wires.

Now, if you're looking for a reliable source for wire rods, including both mild steel and high carbon steel wire rods, Vedanta Metalbazaar is an optimal choice. They offer a diverse range of high-quality products, catering to various construction and industrial needs. Their commitment to quality and innovation ensures that you get the right materials for your specific requirements, whether you're working with mild steel or high-carbon steel wire rods.

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15y ago

You seem to have your terminology confused. Allow me to explain. "Mild" is a term given to steel of a particular grade. Steel is manufactured to many different hardness requirements. Mild steel could be considered "everyday" steel; It has millions of uses and can be found just about everywhere you look. (Car body panels, shelf brackets, roof joists, you name it!) High Speed Steel (HSS) is not a type of steel. It is a designation given to a tool that is capable of cutting through or into steel at high speed. A drill bit with this capability could be designated HSS for example. The drill bit itself is not neccessarily made from steel (it could be made from tungsten or cobalt, say.) "High speed" does not neccessarily mean phenominal speed! The speed at which steel is cut rarely gets higher than 1400RpM and depends upon the thickness of the material in question. Thinner steel can be cut at faster speeds. Also, the larger the cutting bit (and its contact area with the steel), the slower the speed. HSS cutting tools do not have to be used at high speed to be effective, and can equally as well be used at slower speeds. The designation HSS is also sometimes given to power tools that are capable of using such tooling. An HSS power drill for example. An HSS bit is visually the same as a regular bit, hence adding "HSS" to the name of a power tool serves no other purpose than marketing it, as most tools will accept the same tooling.

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12y ago

Mild steel can actually be considered a slang term for low carbon steel. So in reality, there is no difference between the two, because mild steel is actually a more specific type of carbon steel.

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12y ago

Brifely the difference is that mild steel is mild, therfore hard steel is hard, but with a little more detail, its the density that is the main difference.

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14y ago

there is no difference all steel contains a percentage of carbon Low carbon steel (0.05 - 0.15% carbon) Medium carbon steel (0.16 - 0.29% carbon) High carbon steel (0.30 - 1.70% carbon)

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Q: What is the difference between carbon steel and mild steel?
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