Coupling grain boundary motion to shear deformation
نویسندگان
چکیده
Molecular dynamics (MD) simulations confirm that normal grain boundary (GB) motion must often be coupled to tangential translation of grains and will then produce shear deformation of the lattice traversed by the GB. Conversely, shear stresses applied to a GB can induce its normal motion. Using [001] symmetrical tilt GBs in copper as a model, the coupling factor b between the GB motion and grain translations has been calculated by MD simulations over the entire misorientation range and a wide range of temperatures. The coupling factor is multivalued, can be positive or negative, and shows an abrupt switch from one branch to another at a tilt angle of about 35 . At high temperatures the response of high-angle GBs to shear changes from coupling to sliding until coupling disappears. No sliding is observed for low-angle GBs up to near the melting point. A geometric model of coupling proposed in this work predicts the misorientation dependence of b in excellent agreement with MD results and relates the multivalued character of b to the point symmetry of the crystal. Two kinds of low-angle GBs with different dislocations occur when the tilt angle is small and again when it approaches 90 . In these limits, the multiplicity of b is explained by different Burgers vectors of the dislocations. The results of this work are summarized as a temperature–misorientation diagram of mechanical responses of GBs. Unsolved problems and future work in this
منابع مشابه
In situ TEM observation of grain annihilation in tricrystalline aluminum films
Capillarity-driven grain boundary (GB) motion in Al tricrystalline thin films has been investigated by in situ transmission electron microscopy at intermediate temperatures. The GBs were observed to move erratically, with alternating periods of motion and stagnation, followed by rapid shrinkage of the grain and eventual annihilation accompanied by the emission of dislocations. The absence of me...
متن کاملRelationship between equilibrium fluctuations and shear-coupled motion of grain boundaries.
We derive general analytical expressions relating the equilibrium fluctuations of a grain boundary to key parameters governing its motion coupled to shear deformation. We validate these expressions by molecular dynamics simulations for symmetrical tilt boundaries and demonstrate how they can be used to extract the misorientation dependence of the grain-boundary mobility. The results shed light ...
متن کاملUniaxial stress-driven coupled grain boundary motion in hexagonal close-packed metals: A molecular dynamics study
Stress-driven grain boundary (GB) migration has been evident as a dominant mechanism accounting for plastic deformation in crystalline solids. Using molecular dynamics (MD) simulations on a Ti bicrystal model, we show that a uniaxial stress-driven coupling is associated with the recently observed 90 GB reorientation in shock simulations and nanopillar compression measurements. This is not consi...
متن کاملSuperplasticity of a fine-grained Mg–1.5 wt% Gd alloy after severe plastic deformation
The strain rate sensitivity (SRS) of Mg–1.5 wt% Gd processed by conventional extrusion and 2 passes of simple shear extrusion (SSE) was investigated by shear punch testing. Shear punch tests were conducted at initial shear strain rates in the range of 0.003–0.3 s-1 and at temperatures in the range of 573–773 K. A fine-grained microstructure with an average grain size of about 2.5 µm, obtained a...
متن کاملFree Vibration of a Thick Sandwich Plate Using Higher Order Shear Deformation Theory and DQM for Different Boundary Conditions
In this paper, the effect of different boundary conditions on the free vibration analysis response of a sandwich plate is presented using the higher order shear deformation theory. The face sheets are orthotropic laminated composites that follow the first order shear deformation theory (FSDT) based on the Rissners-Mindlin (RM) kinematics field. The motion equations are derived considering the c...
متن کامل