Question:

Considering the stress-strain diagram, the material would be best suited for an application requiring high toughness is:

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Tough materials bend, not break — and mild steel does exactly that. Great for absorbing impact and resisting fracture!
Updated On: June 02, 2025
  • Mild steel, due to its extensive plastic deformation and toughness
  • Cast iron, because of its high brittleness
  • Aluminum alloy, as it has the highest modulus of elasticity
  • Cast iron, due to its high strength
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The Correct Option is A

Solution and Explanation

Toughness is defined as the ability of a material to absorb energy and plastically deform without fracturing. It is represented by the total area under the stress-strain curve.
Why Mild Steel is Best for High Toughness:
  • Mild steel has a combination of moderate strength and very good ductility.
  • This enables it to undergo significant plastic deformation before failure.
  • The large area under its stress-strain curve indicates high toughness.
  • It is commonly used in structures and applications where energy absorption and damage tolerance are important.
Why the Other Options Are Incorrect:
  • (B) Cast iron: Very brittle and fractures easily with little plastic deformation.
  • (C) Aluminum alloy: Has lower modulus than cast iron and limited plastic deformation compared to mild steel.
  • (D) Cast iron: Though strong, its brittleness limits its toughness.
Thus, the material best suited for high toughness is mild steel, because of its excellent ability to deform plastically and absorb energy.
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