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- W2337015366 abstract "The crystallography of the bcc-hcp martensitic transformation in the Zr-2.5% Nb alloy has been analyzed on the basis of the invariant plane strain (IPS) criterion. The Wechsler, Lieberman and Read (W-L-R theory) matrix method of the phenomenological theory of martensitic transformations has been used for computing the crystallographic features such as: orientation relationships, transformation shape strains, the magnitudes and the directions of shape strain shears and the habit planes. The calculated thickness ratio of the two twin fraction of the internally twinned martensite in the Zr-2.5 Nb alloy has been found to be 4.12 and 7.83 for {#101} H H and {01#2} H H twinning modes respectively. The habit plane for {#101} H H shear system and {#101} H H twinning mode has been computed to be {4.34, 3.16, 3} C and {4.67, 4.87, 3} respectively. The crystallographic parameters have been computed for the internally slipped martensite for most extensively reported {#011} H H shear system as well as for two other frequently reported shear systems, {2##2} H H . In the case of {#011} H H shear system the computed magnitude of the inhomogenous shear and habit plane has been found to be .0288 and {4.2,4,3} respectively. The crystallographic parameters computed for the martensite of the Zr-2.5%Nb alloy remain the same for other dilute zirconium base binary alloys, as the lattice parameters and the lattice correspondences do not vary substantially. The predicted crystallographic paramaterers in the present study has been compared with the expermerimentally-determined values." @default.
- W2337015366 created "2016-06-24" @default.
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- W2337015366 date "2004-01-01" @default.
- W2337015366 modified "2023-09-27" @default.
- W2337015366 title "THE CRYSTALLOGRAPHY OF BCC TO HCP MARTENSITIC TRANSFORMATION IN DILUTE Zr-Nb ALLOYS: Part II: Application of Phenomenological Theory of Martensitic Transformation" @default.
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