Understanding of variant selection and twin patterns in compressed Mg alloy sheets via combined analysis of Schmid factor and strain compatibility factor
Twinning is an important deformation mechanism for Mg alloys, which is intimately related to their mechanical behaviors, such as yield strength, strain hardening, ductility and so on. Therefore, a fundamental understanding of twinning behavior and mechanism under various conditions is essential for...
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Published in | Materials science & engineering. A, Structural materials : properties, microstructure and processing Vol. 609; pp. 92 - 101 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Kidlington
Elsevier B.V
15.07.2014
Elsevier |
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Abstract | Twinning is an important deformation mechanism for Mg alloys, which is intimately related to their mechanical behaviors, such as yield strength, strain hardening, ductility and so on. Therefore, a fundamental understanding of twinning behavior and mechanism under various conditions is essential for improving the mechanical properties of Mg alloys. This study aims to extend understanding the mechanism of {10–12} twin variant selection and twin patterns in compression of basal textured AZ31 Mg alloy sheet along transverse direction. Various twin patterns such as independent or intersecting multi-twins in a grain, paired twins in two neighboring grains, and twin chains across many grains were observed in the 3% compressed AZ31 sample. The variant selection of {10–12} twins in the various twin patterns were studied by a combined analysis of Schmid factor and strain compatibility factor, m′. Multiple twin variants can be formed in a grain and the non-Schmid twin variant could be induced by the impingement of a neighboring twin at grain boundary. Paired {10–12} twins are likely formed when the Schmid factors of both twins and their strain compatibility factor are very high. The paired twins can propagate throughout the grains and transfer to more neighboring grains (termed as twin–twin transfer behavior). Such continuous twin–twin transfer behavior across more than three neighboring grains results in the formation of twin chains. In addition, strain accommodation among the different twin variants in the same grain, and the orientation relationship between the paired twins and their common grain boundary direction are discussed. A comprehensive understanding of the twin patterns and variant selection was achieved by such a combined analysis of Schmid factor and strain accommodation factor. |
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AbstractList | Twinning is an important deformation mechanism for Mg alloys, which is intimately related to their mechanical behaviors, such as yield strength, strain hardening, ductility and so on. Therefore, a fundamental understanding of twinning behavior and mechanism under various conditions is essential for improving the mechanical properties of Mg alloys. This study aims to extend understanding the mechanism of {10–12} twin variant selection and twin patterns in compression of basal textured AZ31 Mg alloy sheet along transverse direction. Various twin patterns such as independent or intersecting multi-twins in a grain, paired twins in two neighboring grains, and twin chains across many grains were observed in the 3% compressed AZ31 sample. The variant selection of {10–12} twins in the various twin patterns were studied by a combined analysis of Schmid factor and strain compatibility factor, m′. Multiple twin variants can be formed in a grain and the non-Schmid twin variant could be induced by the impingement of a neighboring twin at grain boundary. Paired {10–12} twins are likely formed when the Schmid factors of both twins and their strain compatibility factor are very high. The paired twins can propagate throughout the grains and transfer to more neighboring grains (termed as twin–twin transfer behavior). Such continuous twin–twin transfer behavior across more than three neighboring grains results in the formation of twin chains. In addition, strain accommodation among the different twin variants in the same grain, and the orientation relationship between the paired twins and their common grain boundary direction are discussed. A comprehensive understanding of the twin patterns and variant selection was achieved by such a combined analysis of Schmid factor and strain accommodation factor. |
Author | Xin, Renlong Liu, Qing Guo, Changfa Song, Bo Ding, Changhong |
Author_xml | – sequence: 1 givenname: Changfa surname: Guo fullname: Guo, Changfa – sequence: 2 givenname: Renlong surname: Xin fullname: Xin, Renlong email: rlxin@cqu.edu.cn – sequence: 3 givenname: Changhong surname: Ding fullname: Ding, Changhong – sequence: 4 givenname: Bo surname: Song fullname: Song, Bo – sequence: 5 givenname: Qing surname: Liu fullname: Liu, Qing |
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Keywords | Strain accommodation Schmid factor Twinning Variant selection Magnesium alloy Crystal twin Deformation Twin boundary Ductility Strain energy Mechanical properties Grain orientation Crystal defect Texture Grain boundary Orientation relation Yield strength Strain hardening |
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SubjectTerms | Accommodation Applied sciences Bedding Cold working, work hardening; annealing, quenching, tempering, recovery, and recrystallization; textures Condensed matter: structure, mechanical and thermal properties Cross-disciplinary physics: materials science; rheology Elasticity, elastic constants Exact sciences and technology Grain boundaries Grains Magnesium alloy Magnesium base alloys Materials science Mechanical and acoustical properties of condensed matter Mechanical properties and methods of testing. Rheology. Fracture mechanics. Tribology Mechanical properties of solids Metals. Metallurgy Other heat and thermomechanical treatments Physics Schmid factor Sheets Strain Strain accommodation Treatment of materials and its effects on microstructure and properties Twinning Variant selection |
Title | Understanding of variant selection and twin patterns in compressed Mg alloy sheets via combined analysis of Schmid factor and strain compatibility factor |
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