Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Dynamic interaction between a coherent precipitate and an edge dislocation

Journal Article · · Metallurgical and Materials Transactions. A, Physical Metallurgy and Materials Science
 [1]
  1. Michigan Technological Univ., Houghton, MI (United States). Dept. of Metallurgical and Materials Engineering

Dynamic interaction between a coherent precipitate and an edge dislocation is analyzed by means of a discrete atom method, which is based on classical statistical mechanics and linear elasticity. Precipitates having a dilatational misfit strain and elastic constants different from those of the matrix phase are treated in anisotropic elastic systems under a plane strain condition. A coherent interface transforms into a semicoherent one by nucleating dipolar dislocations at a stress concentration in a coherent precipitate. One of the dipolar dislocations glides along the precipitate-matrix interface to become a misfit dislocation, and the other slips into the matrix phase to become a lattice dislocation. In accordance with continuum elasticity, a coherent particle with a positive misfit strain migrates to the tension side of an edge dislocation, whereas a particle with a negative misfit diffuses to the region of compression. Morphological change is, however, caused by the dislocation as the particle tries to capitalize on the dislocation stress field, and the particle shape depends on its stiffness and elastic anisotropy. Under an applied shear, a hard coherent particle with a positive misfit strain is sheared along the shear direction, but a soft particle responds in the opposite direction. Elastic interaction between a coherent particle and an edge dislocation can be so strong that the particle-dislocation complex remains coupled even at a high shear strain applied to the system. Some composite applied stresses can cause an edge dislocation to split into two partials. One of the partials, a glissile component, is found to engage actively in the morphological evolution of a particle during a diffusional relaxation.

Sponsoring Organization:
USDOE, Washington, DC (United States); Michigan State Government, Lansing, MI (United States)
DOE Contract Number:
FG02-87ER45315
OSTI ID:
651058
Journal Information:
Metallurgical and Materials Transactions. A, Physical Metallurgy and Materials Science, Journal Name: Metallurgical and Materials Transactions. A, Physical Metallurgy and Materials Science Journal Issue: 8 Vol. 29; ISSN 1073-5623; ISSN MMTAEB
Country of Publication:
United States
Language:
English

Similar Records

On the shape evolution of coherent precipitates: Discrete atom method
Conference · Mon Dec 30 23:00:00 EST 1996 · OSTI ID:479299

Diffusional boundary conditions during coarsening of elastically interacting precipitates
Journal Article · Wed Nov 30 23:00:00 EST 1994 · Metallurgical Transactions, A (Physical Metallurgy and Materials Science); (United States) · OSTI ID:6591350

Multiscale analysis of interfacial stability and misfit dislocation formation in layer-by-layer semiconductor heteroepitaxy
Conference · Thu Jul 01 00:00:00 EDT 1999 · OSTI ID:20014999