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J. Withers, Acta Materialia, vol. 52 (2004), p. 1937. [13] Q. J. Jacques, T. Lani, F. Godet, S. Harlet, P. Colon, F. Delannay, Proceedings of the Int. Conference on TRIP-aided high strength ferrous alloys, vol. 1, Mainz: Druck and Verlag, GmbH, Aachen, 2002, p. 33 Advanced Materials Research Vol. H. C. Chanb and L. cn Keywords: Bulk metallic glass; Deformation evolution; Three-point bending; Shear bands. Abstract. Bending tests have been used extensively to assess the plastic deformation behavior of bulk metallic glasses (BMGs), however, a detailed experimental investigation of the deformation evolution of BMGs during such bending tests have been rarely reported.

5% plastic strain under compression but almost no plastic strain under tension, indicating that the BMG favors deforming plastically under compression rather than tension. This implies that the tensile side of the bending specimen may play a more significant role than the compressive side during the bending process. Fig. 2 shows the SEM micrographs of the convex surfaces of the bending specimens with different deflections. 35 mm deflection. In the elastic state without initiating shear bands, the elastic strain of the convex surface can then be calculated using the equation ε = 6hδ/L2, where h is the sample thickness, δ is the displacement and L the span length [22].

59 (2011) 1037-1047. [16] A. I. Uhlenhaut, B. F. Loffler, Critical Poisson ratio for room-temperature embrittlement of amorphous Mg85Cu5Y10, Phil. Mag. Lett. 87 (2007) 383-392. [17] A. Inoue, T. Zhang, N. Nishiyama, K. Ohba, T. 5 alloy, Mater. Trans. JIM, 34 (1993) 1234-1237. 38 Advances in Materials and Processing Technologies XVI [18] H. Kato, J. Saida, A. 5) alloys, Scripta Mater. 51 (2004) 1063-1068. S. Zhang, W. M. Wang, Y. Yokoyama, K. Yubuta, A. 5 glassy alloy rod with a diameter of 16 mm produced by tilt casting, Mater.

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