2009Unpublished venueRequires access

Dislocations and Plastic Deformation in Ductile Crystals

John B. Wachtman, W. Roger Cannon, M. John Matthewson

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Abstract

This chapter contains sections titled: Introduction Definition of Dislocations Glide and Climb of Dislocations Force on a Dislocation Stress Field and Energy of a Dislocation Force Required to Move a Dislocation Line Tension of a Dislocation Dislocation Multiplication Forces between Dislocations Dislocation Pileups Orowan's Equation for Strain Rate Dislocation Velocity Hardening by Solid Solution and Precipitation Slip Systems Partial Dislocations Deformation Twinning Problems

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What this paper is about

This chapter contains sections titled: Introduction Definition of Dislocations Glide and Climb of Dislocations Force on a Dislocation Stress Field and Energy of a Dislocation Force Required to Move a Dislocation Line Tension of a Dislocation Dislocation Multiplication Forces between Dislocations Dislocation Pileups Orowan's Equation for Strain Rate Dislocation Velocity Hardening by Solid Solution and Precipitation Slip Systems Partial Dislocations Deformation Twinning Problems

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Available abstract

This chapter contains sections titled: Introduction Definition of Dislocations Glide and Climb of Dislocations Force on a Dislocation Stress Field and Energy of a Dislocation Force Required to Move a Dislocation Line Tension of a Dislocation Dislocation Multiplication Forces between Dislocations Dislocation Pileups Orowan's Equation for Strain Rate Dislocation Velocity Hardening by Solid Solution and Precipitation Slip Systems Partial Dislocations Deformation Twinning Problems

Key concepts: Climb, Dislocation creep, Dislocation, Materials science, Frank-Read Source, Peierls stress, Crystal twinning, Partial dislocations

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