|Cyclic deformation and fatigue damage behaviors of (1)over-bar414 oriented Ag single crystal|
|P. Li; Z. F. Zhang; S. X. Li; Z. G. Wang
|Source Publication||Philosophical Magazine
|Abstract||The cyclic deformation and fatigue damage behaviors of [(1) over bar 414] oriented Ag single crystal were investigated in terms of cyclic stress-strain (CSS) curves, surface slip morphologies and dislocation configurations. A clear plateau region appears in the CSS curve of the [(1) over bar 414] Ag single crystal over a strain range of gamma(pl) = 1: 5 x 10(-4) -4 x 10(-3) with average saturation shear stress amplitude of similar to 26.6 MPa. Corresponding ladder-like persistent slip bands (PSBs) also appear in the [(1) over bar 414] Ag single crystal. Compared with other Cu and Ag single crystals with single or double-slip orientations, the saturation resolved shear stresses of the critical double-slip-oriented single crystals, no matter whether for Cu or Ag, are significantly higher than that of the single-slip-oriented ones. Combining the two-phase model with the hindering effect of sessile jogs on screw dislocation movement, a three-phase model is proposed to rationalize the increase of saturation stress. In addition, the surface slip morphologies of the [(1) over bar 414] Ag single crystal were characterized by the interactions between the primary and secondary SBs. According to the difference in their slippage, their interactions can be divided into three types, which could simultaneously appear in different local areas of the same crystal. The current experimental results extend the fundamental understanding of the intrinsic fatigue damage behaviors of fcc metal crystals.|
|description.department||[li, p.; zhang, z. f.; li, s. x.; wang, z. g.] chinese acad sci, inst met res, shenyang natl lab mat sci, shenyang 110016, peoples r china.;zhang, zf (reprint author), chinese acad sci, inst met res, shenyang natl lab mat sci, shenyang 110016, peoples r china;firstname.lastname@example.org
|Keyword||Silver Single Crystal
Cyclic Stress-strain Curve
Persistent Slip Band
Electron Channeling Contrast
Double Slip Orientation
P. Li,Z. F. Zhang,S. X. Li,et al. Cyclic deformation and fatigue damage behaviors of (1)over-bar414 oriented Ag single crystal[J]. Philosophical Magazine,2009,89(32):2903-2920.
P. Li,Z. F. Zhang,S. X. Li,&Z. G. Wang.(2009).Cyclic deformation and fatigue damage behaviors of (1)over-bar414 oriented Ag single crystal.Philosophical Magazine,89(32),2903-2920.
P. Li,et al."Cyclic deformation and fatigue damage behaviors of (1)over-bar414 oriented Ag single crystal".Philosophical Magazine 89.32(2009):2903-2920.
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