Fig. 5: Resolved shear stress calculations employing the Hamilton stress field analysis for a single crystal with ND \([0\overline{11}]\). | Communications Materials

Fig. 5: Resolved shear stress calculations employing the Hamilton stress field analysis for a single crystal with ND \([0\overline{11}]\).

From: Deformation twins as a probe for tribologically induced stress states

Fig. 5

a Maximum resolved shear stress as a function of the rotation angle of SD around the fixed ND, designated \(\varphi\). An angle of \(\varphi\) = 0° corresponds to a SD of \([100]\), \(\varphi\) = 90° to \([0\bar{1}1]\) and \(\varphi\) = 145° to \([\bar{21}1]\); b table of the twin systems with a maximum in resolved shear stress the furthest in front of the sphere and the corresponding maximum resolved shear stress for the experimentally investigated SDs. c Resolved shear stress distribution map for the full stress field of the twin system \(\left(\bar{111}\right)\) \([2\bar{11}]\) in SD \([100]\).

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