Single-crystal gradient plasticity with an accumulated plastic slip: Theory and applications

In experiments on metallic microwires, size effects occur as a result of the interaction of dislocations with, e.g., grain boundaries. In continuum theories this behavior can be approximated using gradient plasticity. A numerically efficient geometrically linear gradient plasticity theory is develop...

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Superior document:Schriftenreihe Kontinuumsmechanik im Maschinenbau / Karlsruher Institut für Technologie, Institut für Technische Mechanik - Bereich Kontinuumsmechanik
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Year of Publication:2017
Language:English
Series:Schriftenreihe Kontinuumsmechanik im Maschinenbau / Karlsruher Institut für Technologie, Institut für Technische Mechanik - Bereich Kontinuumsmechanik
Physical Description:1 electronic resource (XII, 250 p. p.)
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520 |a In experiments on metallic microwires, size effects occur as a result of the interaction of dislocations with, e.g., grain boundaries. In continuum theories this behavior can be approximated using gradient plasticity. A numerically efficient geometrically linear gradient plasticity theory is developed considering the grain boundaries and implemented with finite elements. Simulations are performed for several metals in comparison to experiments and discrete dislocation dynamics simulations. 
546 |a English 
653 |a Finite element method 
653 |a Microwires 
653 |a Einkristallplastizität 
653 |a Finite Elemente MethodeGradient plasticity 
653 |a Korngrenzeffekte 
653 |a Single-crystal plasticity 
653 |a Mikrodrähte 
653 |a Grain boundary influence 
653 |a Gradientenplastizität 
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