ERC Advanced Grant · 2022
Ultimate fracture toughness through thickness engineering
The design of critical structural metallic components in the aeronautic, biomedical, nuclear or pipeline fields is often dictated by a fail-safe criterion established in the context of fracture mechanics. The design must prevent any pre-existing crack to propagate under nominal but also sometimes accidental loads. In this context, the primary material property is the fracture toughness quantifying the resistance to crack initiation. In ductile metals, the fracture toughness depends on plate thickness with a peak value attained at an intermediate thickness in the range of a fraction of a millimetre up to ten millimetres or more. Although this thickness dependence is known since the 60’s, the…
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