Materials Research Letters · 2019 · 103 citations · 31 references
Materials ScienceEngineeringSignificant StrengtheningMechanical PropertiesMechanical BehaviorGradient MaterialsMechanical EngineeringStressstrain AnalysisGradient StructureSolid MechanicsResidual StressMicrostructure-strength RelationshipPlasticityWork HardeningMechanics Of MaterialsHigh Strain Rate
Residual stress exists extensively in biological and engineering structures. Here we report that residual stress can be engineered to significantly enhance the strength and ductility of gradient materials. In-situ synchrotron experiments revealed that the strongest strain hardening occurred in the layer with the highest compressive residual stress in a gradient structure. This layer remained elastic longer than adjacent layers during tension, producing high hetero-deformation induced stress to increase strength and enhancing work hardening even after the disappearance of the compressive stress to increase ductility. This finding provides a new paradigm for designing gradient structures for superior mechanical properties.
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Back stress strengthening and strain hardening in gradient structure
Muxin Yang, Yue Pan, Fuping Yuan et al. · Materials Research Letters · 2016 · 1.4K citations · Full text